Welcome Customer !

Membership

Help

Beijing Yiketai Ecological Technology Co., Ltd
Custom manufacturer

Main Products:

instrumentb2b>Download Materials>Reference List of FluorCam Chlorophyll Fluorescence Imaging System
Download

Beijing Yiketai Ecological Technology Co., Ltd

  • E-mail

    sales@eco-tech.com.cn

  • Phone

    18210150760

  • Address

    101B, Unit 1, Building 6, Courtyard 3, Gaolizhang Road, Haidian District, Beijing

Contact Now
Reference List of FluorCam Chlorophyll Fluorescence Imaging System
Date: 2019-08-19Read: 0
  • DingS,et al.2019, mTERF5 Acts as a Transcriptional Pausing Factor to Positively Regulate Transcription of Chloroplast psbEFLJ. Molecular Plant. doi: 10.1016/j.molp.2019.05.007
  • LvR,et al.2019, Uncoupled expression of nuclear and plastid photosynthesis-associated genes contributes to cell death in a lesion mimic mutant. The Plant Cell 31: 210–230
  • AiharaY,et al.2019, Algal photoprotection is regulated by the E3 ligase CUL4–DDB1DET1. Nature Plants 5:34–40
  • Strict D,et al.2019, Multiomics resolution of molecular events during a day in the life ofChlamydomonas. PNAs 116 (6): 2374 - 2383
  • Herppich WB,et al.2019, External water transport is more important than vascular transport in the extreme atmospheric epiphyteTillandsia usneoides(Spanish moss). Plant, Cell & Environment,42(5):1645-1656
  • MatuszkiewiczM,et al.2019, Limited ventilation causes stress and changes inArabidopsismorphological, physiological and molecular phenotype during in vitro growth. Plant Physiology and Biochemistry 135:554-562
  • ChenY,et al.2019,Mg‐dechelatase is involved in the formation of photosystem II but not in chlorophyll degradation inChlamydomonas reinhardtii. The Plant Journal 97(6):1022-1031
  • HomburgSV,et al.2019. Growth and photosynthetic activity ofChlamydomonas reinhardtiientrapped in lens-shaped silica hydrogels. Journal of Biotechnology 302:58-66
  • ZorićAS,et al.2019. Resource allocation in response to herbivory and gall formation inLinaria vulgaris. Plant Physiology and Biochemistry 135:224–232
  • KüpperH,et al.2019. Analysis of OJIP Chlorophyll Fluorescence Kinetics and QA Reoxidation Kinetics by Direct Fast Imaging. Plant Physiology 179:369–381
  • MarečkováM,et al. 2019. Temperature effects on photosynthetic performance of Antarctic lichenDermatocarpon polyphyllizum: a chlorophyll fluorescence study. Polar Biology 42(4):685–701
  • LiaoX,et al. 2019. The effects of fluorocarbon special surfactant (FS-30) additive on the phase inversion, morphology and separation performance of poly (vinylidene fluoride) (PVDF) membranes. Separation and Purification Technology 212:619-631
  • LellisAD,et al. 2019. eIFiso4G augments the synthesis of specific plant proteins involved in normal chloroplast function. Plant Physiology,doi: 10.1104/pp.19.00557
  • GuoH,et al. 2019. Aphid-borne viral spread is enhanced by virus-induced accumulation of plant reactive oxygen species. Plant Physiology 179:143–155,
  • GerottoC,et al. 2019. Thylakoid protein phosphorylation dynamics in a moss mutant lacking SERINE/THREONINE PROTEIN KINASE STN8. Plant Physiology 180:1582–1597
  • ZhangL,et al. 2019. PPR protein BFA2 is essential for the accumulation of the atpH/F transcript in chloroplasts. Front. Plant Sci. 10:446.
  • HomburgSV,et al. 2019. Entrapment and growth ofChlamydomonas reinhardtiiin biocompatible silica hydrogels. Colloids Surf B Biointerfaces 173: 233-241
  • Wang Y,et al.2019. Salt-adaptive strategies in oil seed cropRicinus communisearly seedlings (cotyledon vs. true leaf) revealed from proteomics analysis. Ecotoxicology and Environmental Safety 171:12–25
  • NtagkasN,et al.2019. Light regulation of vitamin C in tomato fruit is mediated through photosynthesis. Environmental and experimental botany 158(1):180-188
  • DuttonC,et al.2019. Bacterial infection systemically suppresses stomatal density. Plant Cell Environ. 42: 2411–2421
  • Gonzalez-BayonR,et al.2019. Senescence and defense pathways contribute to heterosis. Plant Physiology 180:240–252
  • WangYY,et al.2019. Salicylic acid-alteringArabidopsisplant response to cadmium exposure: Underlying mechanisms affecting antioxidation and photosynthesis-related processes. Ecotoxicology and Environmental Safety 169:645–653
  • MelineV,et al. 2019. Role of the acquisition of a type 3 secretion system in the emergence of novel pathogenic strains ofXanthomonas. Molecular Plant Pathology 20(1):33–50
  • AmeztoyK,et al. 2019. Plant responses to fungal volatiles involve global post‐translational thiol redox proteome changes that affect photosynthesis.Plant Cell Environ. doi: 10.1111/pce.13601
  • FanT,et al. 2019. Complementation studies of theArabidopsisfc1 mutant substantiate essential functions of ferrochelatase 1 during embryogenesis and salt stress. Plant Cell Environ. 42(2):618-632
  • BomfimPMS,et al. 2019. Red galls: the different stories of two gall types on the same host. Plant Biology 21(2):284-291
  • DydaM,et al. 2019. Local and systemic regulation of PSII efficiency in triticale infected by the hemibiotrophic pathogenMicrodochium level. Physiologia Plantarum 165(4):711-727
  • ShiL,et al. 2019. Effect of drought stress on shoot growth and physiological response in the cut rose 'charming black'at different developmental stages. Horticulture, environment and biotechnology 60(1):1-8
  • DummyK,et al. 2019. The essential chloroplast ribosomal protein uL 15c interacts with the chloroplast RNA helicase ISE 2 and affects intercellular trafficking through plasmodesmata. New Phytologist 221(2):850-865
  • ShahbazM,et al. 2019. Conserved Cu-MicroRNAs inArabidopsis thalianaFunction in Copper Economy under Deficiency. Plants 8(6): 141
  • LiuT,et al. 2019. NO is involved in JA-and H2O2-mediated ALA-induced oxidative stress tolerance at low temperatures in tomato. Environmental and Experimental Botany 161:334-343
  • HosseiniA,et al. 2019. Photosynthetic and growth responses of green and purple basil plants under different spectral compositions. Physiol Mol Biol Plants 25(3):741-752
  • MishraKB,et al. 2019. Low temperature induced modulation of photosynthetic induction in non-acclimated and cold-acclimatedArabidopsis thaliana: chlorophyll a fluorescence and gas-exchange measurements. Photosynthesis Research 139(1–3):123–143
  • OrderP,et al. 2019. Acclimation of the photosynthetic apparatus and alterations in sugar metabolism in response to inoculation with endophytic fungi. Plant Cell Environ. 42(4):1408-1423
  • XuJ,et al.2019. Polyamines are involved in GABA-regulated salinity-alkalinity stress tolerance in muskmelon. Environmental and Experimental Botany 164:181-189
  • DodigD,et al.2019. Image-Derived Traits Related to Mid-Season Growth Performance of Maize Under Nitrogen and Water Stress. Front. Plant Sci. 10:814
  • Li Y,et al.2019. OHP1, OHP2, and HCF244 form a transient functional complex with the photosystem II reaction center. Plant Physiology 179:195–208
  • ChukhutsinaVU,et al.2019. Time-resolved fluorescence measurements on leaves: principles and recent developments. Photosynthesis Research 140(3):355–369
  • LuoF,et al.2019. Transcriptome profiling reveals the roles of pigment mechanisms in postharvest broccoli yellowing. Horticulture Research 6:74
  • WeiZ,et al.2019. Melatonin increases the performance of Malus hupehensis after UV-B exposure. Plant Physiology and Biochemistry 139:630-641
  • WenZ,et al.2019. Chlorophyll fluorescence imaging for monitoring effects ofHeterobasidion parviporumsmall secreted protein induced cell death and in planta defense gene expression. Fungal Genetics and Biology 126:37-49
  • HaSTT,et al.2019. Simultaneous Inhibition of Ethylene Biosynthesis and Binding Using AVG and 1-MCP in Two Rose C*rs with Different Sensitivities to Ethylene. Journal of Plant Growth Regulation, doi: 10.1007/s00344-019-09999-6
  • WangZY,et al.2019. Highly reproducible periodic electrical potential changes associated with salt tolerance in wheat plants. Environmental and Experimental Botany 160:120-130
  • WenD,et al.2019. Overexpression of S-nitrosoglutathione reductase alleviated iron-deficiency stress by regulating iron distribution and redox homeostasis. Journal of Plant Physiology 237:1-11
  • PralonT,et al.2019. Plastoquinone homoeostasis byArabidopsisproton gradient regulation 6 is essential for photosynthetic efficiency. Communications Biology 2:220
  • LiuS,et al.2019. Chloroplast translation elongation factor EF-Tu/SVR11 is involved in var2-mediated leaf variegation and leaf development inArabidopsis. Front. Plant Sci. 10:295
  • EcksteinA,et al.2019. A role for GLABRA1 in dark-induced senescence. Acta Biochimica Polonica, doi: 10.18388/abp.2018_2825
  • PontesMS,et al.2019. How does aquatic macrophyte Salvinia auriculata respond to nanoceria upon an increased CO2source? A Fourier transform-infrared photoacoustic spectroscopy and chlorophyll a fluorescence study. Ecotoxicology and Environmental Safety 180:526–534
  • PaulK,et al.2019. Understanding the Biostimulant Action of Vegetal-Derived Protein Hydrolysates by High-Throughput Plant Phenotyping and Metabolomics: A Case Study on Tomato. Front. Plant Sci. 10:47
  • PaulK,et al.2019. A Combined Phenotypic and Metabolomic Approach for Elucidating the Biostimulant Action of a Plant-Derived Protein Hydrolysate on Tomato Grown Under Limited Water Availability. Front. Plant Sci. 10:493
  • LianH,et al.2019. Foliar-applied lanthanum chloride increases growth and phosphorus acquisition in phosphorus-limited adzuki bean seedlings. Plant and Soil, doi: 10.1007/s11104-019-04197-5
  • QinY,et al.2019. Purification and Characterization of a Secretory Alkaline Metalloprotease with Highly Potent Antiviral Activity fromSerratia marcescensStrain S3. Journal of Agricultural and Food Chemistry 67(11):3168-3178
  • Velez RamirezAI,et al.2019. Phytochrome A Protects Tomato Plants From Injuries Induced by Continuous Light. Front. Plant Sci. 10:19
  • CoastalL,et al.2019.Subcellular dynamics of proteins and metabolites under abiotic stress reveal deferred response of theArabidopsis thalianahexokinase‐1 mutant gin2‐1 to high light.The Plant Journal, doi: 10.1111/tpj.14491
  • MacioszekVK,et al.2019.Leaf position‐dependent effect of Alternaria brassicicola development on host cell death, photosynthesis and secondary metabolites inBrassica juncea. Physiologia Plantarumdoi: 10.1111/ppl.12998
  • KhuongTTH,et al.2019. Photoprotection and growth under different lights of Arabidopsis single and double mutants for energy dissipation (npq4) and state transitions (pph1). Plant Cell Reports 38(6):741–753
  • BastetA,et al.2019.Mimicking natural polymorphism in eIF4E by CRISPR‐Cas9 base editing is associated with resistance to potyviruses.Plant Biotechnology Journal 17:1736–1750
  • BanikA,et al.2019. Application of rice (Oryza sativaL.) root endophytic diazotrophicAzotobactersp. strain Avi2 (MCC 3432) can increase rice yield under green house and field condition. Microbiological Research 219:56-65
  • HeuermannMC,et al.2019.Combining next‐generation sequencing and progeny testing for rapid identification of induced recessive and dominant mutations in maize M2individuals.The Plant Journal, doi: 10.1111/tpj.14431
  • YuC,et al.2019. The Phosphoproteomic Response of Okra (Educated AbelmoschusL.) Seedlings to Salt Stress. nt. J. Mol. Sci. 20(6): 1262
  • TouraineB,et al.2019. Iron–sulfur protein NFU2 is required for branched-chain amino acid synthesis inArabidopsisroots. Journal of Experimental Botany 70(6):1875–1889,
  • DikaiosI,et al.2019. Functional analysis of LHCSR1, a protein catalyzing NPQ in mosses, by heterologous expression inArabidopsis thaliana. Photosynthesis Research, doi: 10.1007/s11120-019-00656-3
  • LiuH,et al.2019. The effects of fluorocarbon special surfactant (FS-30) additive on the phase inversion, morphology and separation performance of poly(vinylidene fluoride) (PVDF) membranes. Separation and Purification Technology 212:619-631
  • BernackiMJ,et al.2019.LSD1‐, EDS1‐ and PAD4‐dependent conditional correlation among salicylic acid, hydrogen peroxide, water use efficiency and seed yield inArabidopsis thaliana. Physiologia Plantarum 165(2):369-382
  • LiangC,et al.2019. Optimizing Suitable Antibiotics for Bacterium Control in Micropropagation of Cherry Rootstock Using a Modified Leaf Disk Diffusion Method and E Test. Plants 8(3): 66
  • PolonioA,et al.2019. RNA-seq analysis and fluorescence imaging of melon powdery mildew disease reveal an orchestrated reprogramming of host physiology. Scientific reports 9:7978
  • NtagkasN,et al.2019. Light-Induced Vitamin C Accumulation in Tomato Fruits is Independent of Carbohydrate Availability. Plants 8(4): 86
  • CaiJ,et al.2019. 24-Epibrassinolide treatment regulates broccoli yellowing during shelf life. Postharvest Biology and Technology 154:87–95
  • Espinoza-CorralR,et al.2019. Plastoglobular protein 18 is involved in chloroplast function and thylakoid formation. Journal of Experimental Botany 70(15):3981–3993
  • StortsM,et al.2019.Role of cyclic and pseudo‐cyclic electron transport in response to dynamic light changes inPhyscomitrella patens. Plant, Cell & Environment 42(5):1590-1602
  • Wang ZY,et al.2019. Phenotypic identification and candidate genes analysis of white striped leaf7(wsl7) mutant in rice. Journal of Nanjing Agricultural University 42(1): 21-29
  • RoleK,et al.2019. Heavy-metal tolerance of photobiont in pioneer lichens inhabiting heavily polluted sites. Science of the Total Environment 679:260–269
  • HandheldD,et al.2019. Insights into physiological responses of mossesPhyscomitrella patensandPohlia drummondiito lichen secondary metabolites. Protoplasma, doi: 10.1007/s00709-019-01403-0
  • TabeL,et al.2019. The Phenotypes conferred by Wheat Multiple Pathogen Resistance Locus, Sr2, include Cell Death in Response to Biotic and Abiotic Stresses. Phytopathology, doi: 10.1094/PHYTO-03-19-0099-R
  • NamSH,et al.2019. Quantitative assessment of photosynthetic activity of Chlorella (Class Trebouxiophyceae) adsorbed onto soil by using fluorescence imaging. Environmental Pollution 254: 112942
  • HinojosaL,et al.2019. Impact of heat and drought stress on peroxisome proliferation in quinoa. The Plant Journal, doi:10.1111/tpj.14411
  • JinX,et al.2019. Exogenous GABA enhances muskmelon tolerance to salinity-alkalinity stress by regulating redox balance and chlorophyll biosynthesis. BMC Plant Biology 19:48
  • YeC,et al.2019. Physiological characterization and transcriptome analysis of a chlorosis mutant in pak choi. Plant Physics Act 41:122
  • Pérez - PisaMC,et al.2019. Improvement of growth and yield of soybean plants through the application of non-thermal plasmas to seeds with different health status. Helicopter 5:e01495
  • JoannaP,et al.2019. Activity of the Photosynthetic Apparatus inPhaseolus vulgarisL. Leaves Under the Cadmium Stress. Not Bot Horti Agrobo 47(2):405-411.
  • JiangM,et al. 2019. Expression analysis of three phosphate transporter genes in the fast-growing mutants ofGracilariopsis lemaneiformis(Rhodophyta) under low phosphorus condition. Journal of Applied Phycology 31(3):1907–1919
  • FariasCP,et al. 2019. A consortium of fungal isolates and biochar improved the phytoremediation potential ofJacaranda mimosifoliaD. Don and reduced copper, manganese, and zinc leaching. Journal of Soils and Sediments, doi: 10.1007/s11368-019-02414-3
  • MishraKB,et al. 2019. A correlative approach, combining chlorophyll a fluorescence, reflectance, and Raman spectroscopy, for monitoring hydration induced changes in Antarctic lichenDermatocarpon polyphyllizum. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 208:13-23
  • MorishimaSY,et al. 2019. Study on expelled but viable zooxanthellae from giant clams, with an emphasis on their potential as subsequent symbiont sources. PLoS ONE 14(7): e0220141
  • AlkiminJD,et al. 2019. Evaluation of pharmaceutical toxic effects of non-standard endpoints on the macrophyte speciesLemna minorandLemna gibba. Science of The Total Environment657: 926-937
  • RoleK,et al. 2019. Heavy-metal tolerance of photobiont in pioneer lichens inhabiting heavily polluted sites. Science of The Total Environment 679:260-269
  • LangJ,et al. 2019. THE A water-soluble [60] fullerene-derivative stimulates chlorophyll accumulation and has no toxic effect onChlamydomonas reinhardtii. Polish Biochemical Act. DOI: 10.18388/abp.2019_2835
  • VácziP,et al. 2019. Reprint of Efficient fungal UV-screening provides a remarkably high UV-B tolerance of photosystem II in lichen photobionts. Plant Physiology and Biochemistry 134:123-128
  • AtaeianM,et al. 2019. Direct capture and conversion of CO2from air by growing a cyanobacterial consortium at pH up to 11.2. Biotechnology and Bioengineering 116(7):1604-1611
  • WatanabeE,et al. 2019. Advances in Chlorophyll Fluorescence Theories: Close Investigation into Oxidative Stress and Potential Use for Plant Breeding. Springer,Redox Homeostasis in Plants,137-154
  • TokutsuR,et al. 2019. Isolation of photoprotective signal transduction mutants by systematic bioluminescence screening inChlamydomonas reinhardtii. Scientific Reports 9: 2820
  • NowickaB, 2019.Practical aspects of the measurements of nonphotochemical chlorophyll fluorescence quenching in green microalgaeChlamydomonas reinhardtiiusing Open FluorCam. Physiologia Plantarum. doi:10.1111/ppl.13003
  • PinnolaA,et al. 2018. A LHCB9-dependent photosystem I megacomplex induced under low light inPhyscomitrella patens. Nature Plants 4:910–919
  • KamraniYY,et al. 2018. ROC75 is an Attenuator for the Circadian Clock that Controls LHCSR3 Expression. Plant and Cell Physiology 59(12):2602–2607
  • VriesJ,et al. 2018. Embryophyte stress signaling evolved in the algal progenitors of land plants. PNAS 115 (15):3471-3480
  • ItoA,et al. 2018. An evolutionarily conserved P‐subfamily pentatricopeptide repeat protein is required to splice the plastid ndhA transcript in the mossPhyscomitrella patensandArabidopsis thaliana. The Plant Journal 94:638–648
  • ZhangL,et al.2018, Nucleus-encoded protein BFA1 promotes efficient assembly of the chloroplast ATP synthase coupling factor 1. The Plant Cell,doi:10.1105/tpc.18.00075
  • LunnD,et al. 2018. Development defects of hydroxy-fatty acid-accumulating seeds are reduced by castor acyltransferases. Plant Physiology 177:553–564,
  • BernackiMB,et al. 2018. ENHANCED DISEASE SUSCEPTIBILITY 1 (EDS1) affects development, photosynthesis, and hormonal homeostasis in hybrid aspen (Populus tremula L. ×P. tremuloides). Journal of Plant Physiology 226:91–102
  • QianW,et al. 2018. CsINV5, a tea vacuolar invertase gene enhances cold tolerance in transgenicArabidopsis. BMC Plant Biology 18: 228
  • HöhnerR,et al. 2018. Reduced Arogenate Dehydratase Expression: Ramifications for Photosynthesis and Metabolism. Plant Physiology 177:115–131
  • KalhorMS,et al. 2018. Enhanced salt tolerance and photosynthetic performance: Implication of ɤ-amino butyric acid application in salt-exposed lettuce (Lactuca sativaL.) plants. Plant Physiology and Biochemistry 130:157–172
  • PrinzenbergAE,et al. 2018. Chlorophyll fluorescence imaging reveals genetic variation and loci for a photosynthetic trait in diploid potato. Physiologia Plantarum 164(2):163-175
  • VácziP,et al. 2018. Efficient fungal UV-screening provides a remarkably high UV-B tolerance of photosystem II in lichen photobionts. Plant Physiology and Biochemistry 132:89-94
  • WangL,et al. 2018. Dose-dependent effects of1O2in chloroplasts are determined by its timing and localization of production. Journal of Experimental Botany 70(1): 29-40
  • CampbellZC,et al. 2018. Engineering plants for tomorrow: how high-throughput phenotyping is contributing to the development of better crops. Phytochemistry Reviews 17(6):1329–1343
  • SegechovaA,et al. 2018. Advancement of the c*tion and upscaling of photoautotrophic suspension cultures usingRed Chenopodiumas a case study. Plant Cell, Tissue and Organ Culture. doi:10.1007/s11240-018-1441-6
  • WangL,et al. 2018. Tea plant SWEET transporters: expression profiling, sugar transport, and the involvement of CsSWEET16 in modifying cold tolerance in Arabidopsis. Plant Molecular Biology 96(6):577–592
  • TangX,et al. 2018. A missense mutation of plastid RPS4 is associated with chlorophyll deficiency in Chinese cabbage (Brassica campestrisssp. pekinensis). BMC Plant Biologyvolume 18: 130
  • HubbartS,et al. 2018. Enhanced thylakoid photoprotection can increase yield and canopy radiation use efficiency in rice. Communications Biology 1:22
  • StortsM,et al. 2018. Systemic Calcium Wave Propagation inPhyscomitrella patens. Plant and Cell Physiology 59(7):1377–1384,
  • HeyD,et al. 2018. Requirement of ONE-HELIX PROTEIN 1 (OHP1) in early Arabidopsis seedling development and under high light intensity. Plant Signaling & Behavior 13(12)
  • WangY,et al. 2018. Physiological Adaptive Strategies of Oil Seed CropRicinus communisEarly Seedlings (Cotyledon vs. True Leaf) Under Salt and Alkali Stresses: From the Growth, Photosynthesis and Chlorophyll Fluorescence. Front. Plant Sci. 9:1939
  • BartakM,et al. 2018. Effect of UV‐B radiation on the content of UV‐B absorbing compounds and photosynthetic parameters inParmotrema austrosinensefrom two contrasting habitats.Plant Biology 20(5):808-816
  • JanečkováH,et al. 2018. The interplay between cytokinins and light during senescence in detachedArabidopsisleaves. Plant, Cell & Environment 41(8):1870-1885
  • FengX,et al. 2018. Non-destructive Determination of Shikimic Acid Concentration in Transgenic Maize Exhibiting Glyphosate Tolerance Using Chlorophyll Fluorescence and Hyperspectral Imaging. Front. Plant Sci. 9:468
  • YaoJ,et al. 2018. Phenotyping of Arabidopsis drought stress response using kinetic chlorophyll fluorescence and multicolor fluorescence imaging. Front. Plant Sci. 9:603
  • HaitiansLG,et al. 2018. A program for iron economy during deficiency targets specific Fe proteins. Plant Physiology 176:596–610
  • FerreiraBG,et al. 2018. Antioxidant metabolism in galls due to the extended phenotypes of the associated organisms. PLoS ONE 13(10): e0205364
  • FormentinE,et al.2018. Transcriptome and cell physiological analyses in different rice c*rs provide new insights into adaptive and salinity stress responses. Front. Plant Sci. 9:204
  • HomeUC,et al.2018. Structural, histochemical and photosynthetic profiles of galls induced byEugeniamyia dispar(Diptera: Cecidomyiidae) on the leaves ofEugenia uniflora(Myrtaceae). Rev. Biol. Too much. 66(4): 1469-1480
  • SelloS,et al.2018. Chloroplast Ca2+fluxes into and across thylakoids revealed by thylakoid-targeted aequorin probes. Plant Physiology 177:38–51
  • LabuddaM,et al.2018. Systemic changes in photosynthesis and reactive oxygen species homeostasis in shoots ofArabidopsis thalianainfected with the beet cyst nematodeHeterodera schachtii. Molecular Plant Pathology 19(7):1690–1704
  • NguyenL,et al.2018. Overexpression of the DEAD-Box RNA Helicase Gene AtRH17 Confers Tolerance to Salt Stress inArabidopsis. Int. J. Mol. Sci. 19(12): 3777
  • LiuT,et al.2018. H2O2mediates ALA-induced glutathione and ascorbate accumulation in the perception and resistance to oxidative stress inSolanum lycopersicumat low temperatures. BMC Plant Biology 18: 34
  • CoeRA,et al.2018. High-throughput chlorophyll fluorescence screening of Setaria viridis for mutants with altered CO2compensation points. Functional Plant Biology 45(10):1017-1025
  • AtapaththuKSS,et al.2018. Growth and oxidative stress response of aquatic macrophyteMyriophyllum spicatumto sediment anoxia. Fundamental and Applied Limnology 191(4):289-298(10)
  • GangulyDR,et al.2018.Maintenance of pre‐existing DNA methylation states through recurring excess‐light stress.Plant Cell Environ. 41(7):1657-1672
  • BastetA,et al.2018.Trans‐species synthetic gene design allows resistance pyramiding and broad‐spectrum engineering of virus resistance in plants.Plant Biotechnology Journal 16:1569–1581
  • WangW,et al.2018. Effects of drought stress on photosynthesis and chlorophyll fluorescence images of soybean (Glycine max) seedlings. Int J Agric & Biol Eng 11(2): 196–201
  • LiN,et al. 2018. Transcriptome sequencing dissection of the mechanisms underlying differential cold sensitivity in young and mature leaves of the tea plant (Camellia sinensis). Journal of Plant Physiology 224-225:144-155
  • BenH,et al. 2018. Natural variation in physiological responses of TunisianHuman Rightsunder iron deficiency. Front. Plant Sci. 9:1383
  • KnuestingJ,et al. 2018. Who will win where and why? An ecophysiological dissection of the competition between a tropical pasture grass and the invasive weed Bracken over an elevation range of 1000m in the tropical Andes. PLoS ONE 13(8): e0202255
  • SilvaS,et al. 2018. Physiological performance of drought-stressed olive plants when exposed to a combined heat–UV-B shock and after stress relief. Functional Plant Biology 45(12):1233-1240
  • BartakM,et al. 2018. Effect of UV‐B radiation on the content of UV‐B absorbing compounds and photosynthetic parameters inParmotrema austrosinensefrom two contrasting habitats.Plant Biology 20(5):808-816
  • CharmS,et al. 2018. Growth and photosynthetic performance ofCalendula officinalisunder monochromatic red light. International Journal of Horticultural Science and Technology 5(1):123-132
  • AbeynayakaHDL,et al. 2018. Effects of elevated pressure onPseudanabaena galeataBöcher in varying light and dark environments. Environmental Science and Pollution Research 25(21):21224–21232
  • AlvesF,et al. 2018. Theory and Practice of Climate Adaptation. Climate Change Management, 419-441,Springer, doi:10.1007/978-3-319-72874-2_24
  • LeylaB,et al. 2018. Effects of growth under different light spectra on the subsequent high light tolerance in rose plantsm. AoB PLANTS 10(5)
  • HandheldD,et al. 2018. Adaptations of cyanobacteriumWe're all in commonto environmental stress: Comparison of morphological and physiological markers between European and Antarctic populations after rehydration. Czech Polar Rep 8 (1): 84-93
  • Perozeni F,et al. 2018. LHCSR expression under HSP70/RBCS2 promoter as a strategy to increase productivity in microalgae. International Journal of Molecular Sciences 19(1): 155
  • TripodiP,et al. 2018. Sensing technologies for precision phenotyping in vegetable crops: current status and future challenges. Agronomy 8(4): 57
  • KleefeldA,et al. 2018. Identification of spatial pattern of photosynthesis hotspots in moss- and lichen-dominated biological soil crusts by combining chlorophyll fluorescence imaging and multispectral BNDVI images. Pedobiologia 68:1-11
  • RoachT,et al. 2018. Distress and eustress of reactive electrophiles and relevance to light stress acclimation via stimulation of thiol/disulphide-based redox defences. Free Radical Biology and Medicine 122:65-73
  • NoshiM,et al. 2018. Clade Ib basic helix-loop-helix transcription factor, bHLH101, acts as a regulatory component in photo-oxidative stress responses. Plant Science 274:101–108
  • SerôdioJ,et al. 2018. An LED-based multi-actinic illumination system for the high throughput study of photosynthetic light responses. PeerJ 6: e5589
  • RauchC,et al. 2018. The ability to incorporate functional plastids by the sea slugElysia viridisis governed by its food source. Marine Biology 165:82
  • KviderováJ,et al. 2018. Internal structure and photosynthetic performance ofNostocsp. colonies in the high Arctic. Acts of the Botanic Society of Poland 87(4): 3602
  • MalesM,et al. 2018. Laser removal of biofilm from Carrara marble using 532 nm: The first validation study. Measurement 130:255-263
  • FrankenbachS,et al. 2018. Photoinactivation, repair and the motility-physiology trade-off in microphytobenthos. Marine Ecology Progress Series 601:41-57
  • KimYS,et al. 2018. Expression of OsTPX gene improves cellular redox homeostasis and photosynthesis efficiency inSynechococcus elongatus PCC 7942. Front. Plant Sci. 9:1848
  • OrekhovaA,et al. 2018. Post rapid freezing growth of Antarctic strain ofHeterococcussp. monitored by cell viability and chlorophyll fluorescence. Cryobiology 85:39-46
  • HeyerM,et al. 2018. Herbivory-responsive calmodulin-like protein CML9 does not guide jasmonate-mediated defenses inArabidopsis thaliana. PLoS One 13(5): e0197633.
  • HaneltD, 2018.Photosynthesis assessed by chlorophyll fluorescence. Bioassays:Advanced Methods and Applications,Elsevier,doi:10.1016/B978-0-12-811861-0.00032-2
  • PerozeniF,et al. 2018. LHCSR Expression under HSP70/RBCS2 Promoter as a Strategy to Increase Productivity in Microalgae. International Journal of Molecular Sciences 19(155),doi:10.3390/ijms1901015
  • AlexanderssonE,et al. 2018. Nordic research infrastructures for plant phenotyping. Agricultural and Food Science27: 7-16
  • Shang-GuanK,et al. 2018. Lipopolysaccharides trigger two successive bursts of reactive oxygen species at distinct cellular locations. Plant Physiology,DOI:10.1104/pp.17.01637
  • HaitiansL J,et al. 2018. A program for iron economy during deficiency targets specific Fe proteins. Plant Physiology 176, 596-610
  • ErlandL A E,et al. 2018. Melatonin and serotonin: Mediators in the symphony of plant morphogenesis. Journal of Pineal Research64(2),DOI: 10.1111/jpi.12452
  • AbdelkefiH,et al. 2018. Guanosine tetraphosphate modulates salicylic acid signalling and the resistance ofArabidopsis thalianatoTurnip mosaic virus. Molecular Plant Pathology19(3):634-646
  • PinedaM,et al. 2018. Detection of bacterial infection in melon plants by classification methods based on imaging data. Front. Plant Sci. 9(164),two: 10.3389/fpls.2018.00164
  • Chojak - KoźniewskaJ,et al. 2018. Primary carbon metabolism-related changes in cucumber exposed to single and sequential treatments with salt stress and bacterial infection. Plant Physiology and Biochemistry 123,160-169
  • PrinzenbergA E,et al. 2018. Chlorophyll fluorescence imaging reveals genetic variation and loci for a photosynthetic trait in diploid potato. Physiologia Plantarum,DOI: 10.1111/ppl.12689
  • NeufferB,et al. 2018. The role of ecotypic variation in driving worldwide colonization by a cosmopolitan plant. AoB PLANTS10(1), s://doi.org/10.1093/aobpla/ply005
  • FristedtR,et al. 2018. RAF2 is a Rubisco Assembly Factor inArabidopsis thaliana. The Plant Journal,DOI: 10.1111/tpj.13849
  • ScholzS S,et al. 2018. Verticillium dahliae-Arabidopsisinteraction causes changes in gene expression profiles and jasmonate levels on different time scales. Front. Microbiol. 9,217,doi: 10.3389/fmicb.2018.00217
  • Zhao L,et al. 2018. Enzymatic activity and chlorophyll fluorescence imaging of maize seedlings (Zea maysL.) after exposure to low doses of chlorsulfuron and cadmium. Journal of Integrative Agriculture 16(0),60345-7
  • LiuT,et al. 2018. H2O2mediates ALA-induced glutathione and ascorbate accumulation in the perception and resistance to oxidative stress inSolanum lycopersicumat low temperatures. BMC Plant Biology 18(34), s://doi.org/10.1186/s12870-018-1254-0
  • SouzaG G,et al. 2018. Morpho-physiological Tolerance Mechanisms ofTalin patensto Lead. Water Air Soil Pollut 229:4
  • VaseghiMJ,et al. 2018. The chloroplast 2-cysteine peroxiredoxin functions as thioredoxin oxidase in redox regulation of chloroplast metabolism. eLife, doi:10.7554/eLife.38194
  • Barabasz - KrasnyB,et al. 2018. Biological Traits ofImpatiens parvifloraDC. under Different Habitat Conditions. Not Bot Horti Agrobo 46(1): 277-285.
  • HaneltD, 2018.Photosynthesis assessed by chlorophyll fluorescence. Bioassays:Advanced Methods and Applications,Elsevier, s://doi.org/10.1016/B978-0-12-811861-0.00032-2
  • PerozeniF,et al. 2018. LHCSR Expression under HSP70/RBCS2 Promoter as a Strategy to Increase Productivity in Microalgae. International Journal of Molecular Sciences 19(155),doi:10.3390/ijms19010155
  • WangL,et al. 2017. The Phytol Phosphorylation Pathway Is Essential for the Biosynthesis of Phylloquinone, which Is Required for Photosystem I Stability inArabidopsis. Molecular Plant 10:183-196
  • Exhibition RodriguezM,et al. 2017. Photosynthesis-dependent H2O2transfer from chloroplasts to nuclei provides a high-light signalling mechanism. Nature Communications 8:49
  • From the EastL,et al. 2017. Two mechanisms for dissipation of excess light in monomeric and trimeric light-harvesting complexes. Nature Plants 3(5) :17033
  • YangZ,et al. 2017. RNase H1 Cooperates with DNA Gyrases to Restrict R-loops and Maintain Genome Integrity inArabidopsisChloroplasts. The Plant Cell, s://doi.org/10.1105/tpc.17.00305
  • VanhaerenH,et al. 2017. Forever Young: The Role of Ubiquitin Receptor DA1 and E3 Ligase BIG BROTHER in Controlling Leaf Growth and Development. Plant Physiology 173 (2), 1269
  • DakhiyaY,et al. 2017. Correlations between circadian rhythms and growth in challenging environments. Plant Physiology, s://doi.org/10.1104/pp.17.00057
  • EarningsC R,et al. 2017. Dead or alive? Using membrane failure and chlorophyll fluorescence to predict mortality from drought. Plant Physiology,DOI:10.1104/pp.16.00581
  • GangulyD,et al. 2017. The Arabidopsis DNA methylome is stable under transgenerational drought stress. Plant Physiology,DOI:10.1104/pp.17.00744
  • BartrinaI,et al. 2017. Gain-of-function mutants of the cytokinin receptors AHK2 and AHK3 regulate plant organ size, flowering time and plant longevity. Plant Physiology,DOI:10.1104/pp.16.01903
  • HartingsS,et al. 2017. The DnaJ-like zinc-finger protein HCF222 is required for thylakoid membrane biogenesis. Plant Physiology,DOI:10.1104/pp.17.00401
  • HassidimM,et al. 2017. CIRCADIAN CLOCK ASSOCIATED 1 (CCA1) and the circadian control of stomatal aperture. Plant Physiology,DOI:10.1104/pp.17.01214
  • LiangS,et al. 2017. Mutations in the Arabidopsis AtMRS2-11/AtMGT10/VAR5 gene cause leaf reticulation. Front. Plant Sci. 8,2007,two: 10.3389/fpls.2017.02007
  • CenH,et al. 2017. Chlorophyll Fluorescence Imaging Uncovers Photosynthetic Fingerprint of Citrus Huanglongbing. Front. Plant Sci. 8:1509 two: 10.3389/fpls.2017.01509
  • FrankenbachS,et al. 2017. One pulse, one light curve: Fast characterization of the light response of microphytobenthos biofilms using chlorophyll fluorescence. Limnology and Oceanography-Methods15(6):554-566
  • GongB,et al. 2017. Hydrogen peroxide produced by NADPH oxidase: a novel downstream signaling pathway in melatonin-induced stress tolerance inSolanum lycopersicum. Physiologia Plantarum 160(4):359-479
  • SuiX,et al. 2017. The complex character of photosynthesis in cucumber fruit. Journal of Experimental Botany 68(7): 1625-1637
  • ZhouC,et al. 2017. Bacillus amyloliquefaciensSAY09 increases cadmium resistance in plants by activation of auxin-mediated signaling pathways. Genes 8(7): 173
  • AguilarE,et al. 2017. Virulence determines beneficial trade‐offs in the response of virus‐infected plants to drought via induction of salicylic acid.Plant, Cell & Environment 40(12):2909-2930
  • ChristaG,et al. 2017. Photoprotection in a monophyletic branch of chlorophyte algae is independent of energy‐dependent quenching (qE).New Phytologist 214(3):1132-1144
  • AgathokleousE,et al. 2017. High doses of ethylenediurea (EDU) as soil drenches did not increase leaf N content or cause phytotoxicity in willow grown in fertile soil. Ecotoxicology and Environmental Safety 147: 574-584
  • AhmadR A,et al. 2017. Relaxation of cellular K+gradients by valinomycin induces diatoxanthin accumulation inCyclotella meneghinianacells and alters FCPa fluorescence yield in vitro. Physiologia Plantarum 161(1):171-180
  • RoachT,et al. 2017. Chlamydomonas reinhardtiiresponding to high light: a role for 2-propenal (acrolein). Physiologia Plantarum 161(1):75-87
  • SerôdioJ,et al. 2017. A chlorophyll fluorescence-based method for the integrated characterization of the photophysiological response to light stress. Journal of Experimental Botany 68(5):1123-1135
  • BakshiM,et al. 2017. Piriformospora indicaReprograms Gene Expression in Arabidopsis Phosphate Metabolism Mutants But Does Not Compensate for Phosphate Limitation. Front. Microbiol. 8:1262
  • ClineS G,et al. 2017. CCS2, an Octatricopeptide-Repeat Protein, Is Required for Plastid Cytochrome c Assembly in the Green AlgaChlamydomonas reinhardtii. Front. Plant Sci. 8:1306
  • MayR L,et al. 2017. Classification of intra-specific variation in plant functional strategies reveals adaptation to climate. Annals of Botany 119(8): 1343-1352
  • ShebelaD,et al. 2017. Chlorophyll fluorescence and reflectance-based non-invasive quantification of blast, bacterial blight and drought stresses in rice. Plant and Cell Physiology 59(1):30-43
  • BielczynskiL W,et al. 2017. Leaf and plant age affects photosynthetic performance and photoprotective capacity. Plant Physiology, s://doi.org/10.1104/pp.17.00904
  • AlejandroS,et al. 2017. Intracellular Distribution of Manganese by the Trans-Golgi Network Transporter NRAMP2 Is Critical for Photosynthesis and Cellular Redox Homeostasis. Plant Cell,doi:10.1105/tpc.17.00578
  • BarriusaB C,et al. 2017. Conservation of calcareous stone monuments: Screening different diammonium phosphate based formulations for countering phototrophic colonization. Journal of Cultural Heritage 27:97-106
  • MuellerS M,et al. 2017. The redox-sensitive module of cyclophilin 20-3, 2-cysteine peroxiredoxin and cysteine synthase integrates sulfur metabolism and oxylipin signaling in the high light acclimation response. The Plant Journal 91(6): 995-1014
  • KrauskoM,et al. 2017. The role of electrical and jasmonate signalling in the recognition of captured prey in the carnivorous sundew plantDrosera capensis. New Phytologist 213: 1818-1835
  • ShuklaM R,et al. 2017. Application of 3D printing to prototype and develop novel plant tissue culture systems. Plant Methods 13:6
  • DummyK,et al. 2017. The chloroplast RNA helicase ISE2 is required for multiple chloroplast RNA processing steps inArabidopsis thaliana. The Plant Journal 91(1):114-131
  • Velez-RamirezA L,et al. 2017. Sucrose and Starch Content Negatively Correlates with PSII Maximum Quantum Efficiency in Tomato (Solanum lycopersicum) Exposed to Abnormal Light/Dark Cycles and Continuous Light. Plant and Cell Physiology 58(8): 1339-1349
  • MaglovskiM,et al. 2017. Nutrition supply affects the activity of pathogenesis-related β-1,3-glucanases and chitinases in wheat. Plant Growth Regul 81,443-453
  • CarneiroR G S,et al. 2017. Reacquisition of New Meristematic Sites Determines the Development of a New Organ, the Cecidomyiidae Gall onCopaifera langsdorffiiDesf. (Fabaceae). Front. Plant Sci. 8(1622),two: 10.3389/fpls.2017.01622
  • OliveiraD C,et al. 2017. Sink status and photosynthetic rate of the leaflet galls induced byBystracoccus mataybae(Eriococcidae) onSpell guianensis.(Sapindaceae). Front. Plant Sci. 24, s://doi.org/10.3389/fpls.2017.01249
  • Velez-RamirezA L,et al. 2017. On the induction of injury in tomato under continuous light: circadian asynchrony as the main triggering factor. Functional Plant Biology 44(6),597-611
  • VictoryP,et al. 2017. Detection of herbicide effects on pigment composition and PSII photochemistry inHelianthus annuusby Raman spectroscopy and chlorophyll a fluorescence. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 170,234-241
  • PerinG,et al. 2017. C*tion in industrially relevant conditions has a strong influence on biological properties and performances ofNannochloropsis gaditanagenetically modified strains. Algal Research 28,88-99
  • SelloS,et al. 2017. A Rapid and Efficient Method to Obtain Photosynthetic Cell Suspension Cultures ofArabidopsis thaliana. Front. Plant Sci. 8,1444,two: 10.3389/fpls.2017.01444
  • Barczak - BrzyżekA K,et al. 2017. Cross-talk between high light stress and plant defence to the two-spotted spider mite inArabidopsis thaliana. Exp Appl Acarol 73,177-189
  • LabuddaM,et al. 2017. Systemic changes in photosynthesis and ROS homeostasis in shoots ofArabidopsis thalianainfected with beet cyst nematodeHeterodera schachtii. Molecular Plant Pathology,DOI: 10.1111/mpp.12652
  • KimY C,et al. 2017. 'Kowon', a New Korean Ginseng C*rs with High Yield and Alternaria Blight Resistance. Horticultural Science And Technology 35(4),499-509
  • LimH,et al. 2017. Growth and Physiological Responses ofQuercusSeedling under Drought Stress. Plant Breed. Biotech. 5(4),363-370
  • OliveiraV,et al. 2017. Effects of the Inoculant StrainPseudomonassp. SPN31 nah + and of 2-Methylnaphthalene Contamination on the Rhizosphere and Endosphere Bacterial Communities ofLike the kiss.. Current Microbiology 74(5), 575-583
  • ShimadaA,et al. 2017. Effect of Temperature on Photosynthesis Characteristics in the Passion Fruits 'Summer Queen'and 'Ruby Star'. The Horticulture Journal 86 (2), 194-199.
  • LukashenkoE,et al. 2017. Photosynthesis and sucrose metabolism in leaves ofArabidopsis thalianaaos, ein4 and rcd1 mutants as affected by wounding. Plant Physics Act 39,17
  • ZhurekR,et al. 2017. Toxicity evaluation of spent drilling mud and drilling waste. AGH Drilling, Oil, Gas 34(1), 243-258
  • SandmannM,et al. 2017. The use of features from fluorescence, thermography and NDVI imaging to detect biotic stress in lettuce. Plant Disease, s://doi.org/10.1094/PDIS-10-17-1536-RE
  • SinghA S,et al. 2017. High light intensity stress as the limiting factor in micropropagation of sugar maple (Acer saccharumMarsh. ). Plant Cell, Tissue and Organ Culture 129(2): 209-221
  • HigoS,et al. 2017. Application of a pulse-amplitude-modulation (PAM) fluorometer reveals its usefulness and robustness in the prediction ofKarenia mikimotoiblooms: A case study in Sasebo Bay, Nagasaki, Japan. Harmful Algae 61:63-70
  • NoshiM,et al. 2017. Arabidopsisdehydroascorbate reductase 1 and 2 modulate redox states of ascorbate-glutathione cycle in the cytosol in response to photooxidative stress. Bioscience, Biotechnology, and Biochemistry 81(3):523-533
  • KhanalN,et al. 2017. Differential Mechanisms of Photosynthetic Acclimation to Light and Low Temperature in Arabidopsis and the ExtremophileEutrema salsugineum. Plants 6(3): 32
  • TrnkováK,et al. 2017. Desiccation-induced changes in photochemical processes of photosynthesis and spectral reflectance inWe're all in common(Cyanobacteria, Nostocales) colonies from polar regions. Phycological Research 65(1),44-50
  • SegechovaA,et al. 2017. Stress Response Monitoring of Photoautotrophic Higher Plant Suspension Cultures by Fluorescence Imaging for High-Throughput Toxic Compound Screening. Journal of Environmental Protection 8, 678-692
  • JeS W,et al. 2017. Combined effect of elevated CO2concentration and drought on the photosynthetic apparatus and leaf morphology traits in seedlings of yellow poplar. Ecological Research,1-10
  • CzechH,et al. 2017. Establishment of integrated protocols for automated high throughput kinetic chlorophyll fluorescence analyses. Plant Methods13(54),DOI 10.1186/s13007-017-0204-4
  • PinedaM,et al. 2017. Use of multicolour fluorescence imaging for diagnosis of bacterial andfungal infection on zucchini by implementing machine learning. Functional Plant Biology, s://doi.org/10.1071/FP16164
  • VictoryP,et al. 2017. Detection of herbicide effects on pigment composition and PSII photochemistry inHelianthus annuusby Raman spectroscopy and chlorophyll a fluorescence. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 170,234-241
  • JanchulaD,et al. 2017. Digestate and Fugate – Fertilizers with Ecotoxicological Risks. Acta Univ. Agric. Silvic. Mendelianae Brun. 65, 1183-1188
  • Wei Xiaoxiao,Wang Shiya,Chen Ailing,Ye Yiquan,Huang Tiansheng,Cao Guangqiu2017,Physiological responses of different allelopathic Chinese fir clones to continuous planting Journal of Forestry and Environment 37 (1): 22-28
  • ChoiH G,et al. 2016. Correlation between strawberry (Fragaria ananassaDuch. ) productivity and photosynthesis-related parameters under various growth conditions. Frontiers in Plant Science 7,1607,two: 10.3389/fpls.2016.01607
  • AllorentG,et al. 2016. UV-B photoreceptor-mediated protection of the photosynthetic machinery inChlamydomonas reinhardtii. PNAs 113 (51),14864-14869
  • ZhangL,et al. 2016. VIPP1 Has a Disordered C-Terminal Tail Necessary for Protecting Photosynthetic Membranes against Stress. Plant Physiology 171,1983-1995
  • ShapiguzovA,et al. 2016. Activation of the Stt7/STN7 Kinase through Dynamic Interactions with the Cytochrome b6f Complex. Plant Physiology 171, 82-92
  • Sánchez-LópeA M,et al. 2016. Plant response to fungal volatiles is triggering by mechanisms independent of plastid phosphoglucose isomerase. Plant Physiology,DOI:10.1104/pp.16.00945
  • WinglerA,et al. 2016. Trehalose 6-Phosphate Is Required for the Onset of Leaf Senescence Associated with High Carbon Availability. Plant Physiology 158, 1241-1251
  • BorekM,et al. 2016. Photosynthetic activity of variegated leaves ofColeus×hybridushort. c*rs characterised by chlorophyll fluorescence techniques. Photosynthetica 54(3),331-339
  • SimkoI,et al. 2016. Non-destructive Phenotyping of Lettuce Plants in Early Stages of Development with Optical Sensors. Frontiers in Plant Science27,two: 10.3389/fpls.2016.01985
  • Zheng C, et al. 2016. Global Transcriptional Analysis Reveals the Complex Relationship between Tea Quality, Leaf Senescence and the Responses to Cold-Drought Combined Stress inCamellia sinensis. Front. Plant Sci. 7,1858. two: 10.3389/fpls.2016.01858
  • TibetanT, et al. 2016. Chlamydomonas reinhardtiiPsbS protein is functional and accumulates rapidly and transiently under high light. Plant Physiology, s://doi.org/10.1104/pp.16.00572
  • KozulevaM, et al. 2016. Ferredoxin: NADP(H) Oxidoreductase Abundance and Location Influences Redox Poise and Stress Tolerance. Plant Physiology 172, 1480-1493
  • RabbitI,et al. 2016. Response of lichensCladonia shrubsubsp.mitisandCladonia furcatato nitrogen excess. Biology 71(6),632-638
  • MishraK B,et al. 2016. Chlorophyll a fluorescence, under half of the adaptive growth-irradiance, for high-throughput sensing of leaf-water deficit inArabidopsis thalianaaccessions. Plant Methods 12(46),DOI 10.1186/s13007-016-0145-3
  • Sánchez-LópeA M,et al. 2016. Arabidopsis Responds toAlternaria alternataVolatiles by Triggering Plastid Phosphoglucose Isomerase-Independent Mechanisms. Plant Physiology172,1989-2001
  • CastaingsL,et al. 2016. The high-affinity metal transporters NRAMP1 and IRT1 team up to take up iron under sufficient metal provision. Scientific RepoRts 6(37222),DOI: 10.1038/srep37222
  • SuglianiM,et al. 2016. An Ancient Bacterial Signaling Pathway Regulates Chloroplast Function to Influence Growth and Development inArabidopsis. The Plant Cell28(3),661-679
  • Pérez - BuenoM L,et al. 2016. Multicolor Fluorescence Imaging as a Candidate for Disease Detection in Plant Phenotyping. Frontiers in Plant Science 7,1790
  • PushkarevaE,et al. 2016. A review of the ecology, ecophysiology and biodiversity of microalgae in Arctic soil crusts. Polar Biology 39(12), 2227-2240
  • ElsterJ,et al. 2016. Unusual biogenic calcite structures in two shallow lakes, James Ross Island, Antarctica. Biogeosciences 13, 535-549
  • RungratT,et al. 2016. Using Phenomic Analysis of Photosynthetic Function for Abiotic Stress Response Gene Discovery. The Arabidopsis Book,The American Society of Plant Biologists, s://doi.org/10.1199/tab.0185
  • Sánchez-Lorpez A M,et al. 2016. Volatile compounds emitted by diverse phytopathogenic microorganisms promote plant growth and flowering through cytokinin action. Plant, Cell & Environment 39(12),2592-2608
  • QiY,et al. 2016. A Putative Chloroplast Thylakoid Metalloprotease VIRESCENT3 Regulates Chloroplast Development inArabidopsis thaliana. The Journal of Biological Chemistry 291,3319-3332
  • QiY,et al. 2016. Mutations in circularly permuted GTPase family genesAt/RIF1/SVR10andBPG2suppressvar2-mediated leaf variegation inArabidopsis thaliana. Photosynthesis Research 127(3), 355-367
  • HuangS,et al. 2016. Physiological Characterization and Comparative Transcriptome Analysis of a Slow-Growing Reduced-Thylakoid Mutant of Chinese Cabbage (Brassica campestrisssp. pekinensis). Front. Plant Sci. 7, 3
  • NitschkeS,et al. 2016. Circadian Stress Regimes Affect the Circadian Clock and Cause Jasmonic Acid-Dependent Cell Death in Cytokinin-Deficient Arabidopsis Plants. Plant Cell 28 (7),doi:10.1105/tpc.16.00016
  • HashidaS,et al. 2016. Increased Rate of NAD Metabolism Shortens Plant Longevity by Accelerating Developmental Senescence inArabidopsis. Plant Cell Physiol. 57(11),2427-2439
  • ChequeV,et al. 2016. Involvement of Potassium Transport Systems in the Response ofSynechocystisPCC 6803 Cyanobacteria to External pH Change, High-Intensity Light Stress and Heavy Metal Stress. Plant Cell Physiol. 57(4), 862-877
  • ZhangL,et al. 2016. Biogenesis Factor Required For ATPSynthase 3 Facilitates Assembly of the Chloroplast ATP Synthase Complex. Plant Physiology171,1291-1306
  • KongL A,et al. 2016. Comparison of the photosynthetic characteristics in the pericarp and flag leaves during wheat (Tritical aestheticsL.) caryopsis development. Photosynthetica 54(1),40-46
  • WangLS,et al. 2016. Singlet oxygen- and EXECUTER1-mediated signaling is initiated in grana margins and depends on the protease FtsH2. PNAs,DOI: 10.1073 /pnas. 1603562113
  • MonteroR,et al. 2016. Alterations in primary and secondary metabolism inVitis vinifera‘Malvasía de Banyalbufar’ upon infection with Grapevine leafroll-associated virus 3. Physiologia Plantarum 157(4),442-452
  • GotoS,et al. 2016. P-class pentatricopeptide repeat protein PTSF1 is required for splicing of the plastid pre-tRNAIle inPhyscomitrella patens. The Plant Journal 86, 493-503
  • ZwackPJ,et al. 2016. Cytokinin Response Factor 6 Represses Cytokinin-Associated Genes during Oxidative Stress. Plant Physiology 172(2),1249-1258
  • BerteottiS,et al. 2016. Increased biomass productivity in green algae by tuning non-photochemical quenching. Scientific Reports 6,21339
  • WatanabeCK,et al. 2016. Mitochondrial alternative pathway-associated photoprotection of photosystem II is related to the photorespiratory pathway. Plant Cell Physiol,doi: 10.1093/pcp/pcw036
  • KulasekM,et al. 2016. Contribution of PsbS Function and Stomatal Conductance to Foliar Temperature in Higher Plants. Plant Cell Physiol,doi: 10.1093/pcp/pcw083
  • NoshM,et al. 2016. Redox regulation of ascorbate and glutathione by a chloroplastic dehydroascorbate reductase is required for high-light stress tolerance in Arabidopsis. Bioscience, Biotechnology, and Biochemistry 80(5), ://dx.doi.org/10.1080/09168451.2015.1135042
  • AuliaE,et al. 2016. High-throughput non-destructive phenotyping of traits that contribute to salinity tolerance inArabidopsis thaliana. Front Plant Sci. 7, 1414
  • FloodPJ,et al. 2016. Whole-Genome Hitchhiking on an Organelle Mutation. Current Biology 26, 1-6
  • ThalmannMR,et al. 2016. Regulation of leaf starch degradation by abscisic acid is important for osmotic stress tolerance in plants. The Plant Cell, :/​/​dx.​doi.​org/​10.​1105/​tpc.​16.​00143
  • Raw materialE,et al. 2016. Effects of exogenously applied hydrogen peroxide on antioxidant and osmoprotectant profiles and the C3-CAM shift in the halophyteMesembryanthemum crystallinumL. Journal of Plant Physiology 200, 102-110
  • VahabiK,et al. 2016. Stress promotes Arabidopsis -Piriformospora indicainteraction. Plant Signaling & Behavior 11(5),e1136763
  • ExquisiteH,et al. 2016. C2-substituted aromatic cytokinin sugar conjugates delay the onset of senescence by maintaining the activity of the photosynthetic apparatus. Phytochemistry 122, 22-33
  • LauersenK J,et al. 2016. Efficient phototrophic production of a high-value sesquiterpenoid from the eukaryotic microalgaChlamydomonas reinhardtii. Metabolic Engineering, ://dx.doi.org/10.1016 /j.ymben.2016.07.013
  • KimJ A,et al. 2016. Reduction of GIGANTEA expression in transgenic Brassica rapa enhances salt tolerance. Plant Cell Reports 35(9), 1943-1954
  • SilenceK,et al. 2016. PsbS is required for systemic acquired acclimation and post-excess-light-stress optimization of chlorophyll fluorescence decay times in Arabidopsis. Plant Signaling & Behavior 10:1
  • WarP,et al. 2016. Whole transcriptome analysis of transgenic barley with altered cytokinin homeostasis and increased tolerance to drought stress. New Biotechnology 33(5), Part B, 676-691
  • CharmS,et al. 2016. Stomatal characteristics and desiccation response of leaves of cut chrysanthemum (Chrysanthemum morifolium) flowers grown at high air humidity. Horticulture science 205,84-89
  • WannathongT,et al. 2016. New tools for chloroplast genetic engineering allow the synthesis of human growth hormone in the green algaChlamydomonas reinhardtii. Applied Microbiology and Biotechnology 100(12), 5467-5477
  • LavialeM,et al. 2016. The importance of being fast: comparative kinetics of vertical migration and non-photochemical quenching of benthic diatoms under light stress. Marine Biology 163,10
  • PerinG,et al. 2016. Novel micro-photobioreactor design and monitoring method for assessing microalgae response to light intensity. Algal Research 19, 69-76
  • ShimadaA,et al. 2016. Effect of Temperature on Photosynthesis Characteristics in the Passion Fruits ‘Summer Queen’ and ‘Ruby Star’. The Horticulture Journal,doi: 10.2503/hortj. OKD-023
  • PichrtM,et al. 2016. Annual development of mat-forming conjugating green algaeZygnemaspp. in hydro-terrestrial habitats in the Arctic. Polar Biology 39(9),1653-1662
  • PietriniF,et al. 2016. Combined effects of elevated CO2and Cd-contaminated water on growth, photosynthetic response, Cd accumulation and thiolic components status inLemna minorL. Journal of Hazardous Materials 309, 77-86
  • PavlovichA,et al. 2016. Light-induced gradual activation of photosystem II in dark-grown Norway spruce seedlings. Biochimica et Biophysica Acta (BBA) – Bioenergetics 1857(6),799-809
  • PichrtM,et al.2016. Formation of lipid bodies and changes in fatty acid composition upon pre-akinete formation in Arctic and AntarcticZygnema(Zygnematophyceae, Streptophyta) strains. FEMS Microbiology Ecology doi: 10.1093/femsec/iw096
  • SoybeanJ,et al. 2016. In Vitro Regeneration Potential of Seven Commercial Soybean C*rs (Glycine maxL.) for Use in Biotechnology. New Biotechnology and Chemistry 15(1),DOI:10.1515/nbec-2016-0001
  • GhazaryanA,et al. 2016. Involvement of the Lhcx protein Fcp6 of the diatomCyclotella meneghinianain the macro-organisation and structural flexibility of thylakoid membranes. Biochimica et Biophysica Acta (BBA) – Bioenergetics 1857(9), 1373-1379
  • NowickaB,et al. 2016. Physiological characterization ofChlamydomonas reinhardtiiacclimated to chronic stress induced by Ag, Cd, Cr, Cu and Hg ions. Ecotoxicology and Environmental Safety 130,133-145
  • GypserS,et al. 2016. Photosynthetic characteristics and their spatial variance on biological soil crusts covering initial soils of post-mining sites in Lower Lusatia, NE Germany. Flora - Morphology, Distribution, Functional Ecology of Plants 220,103-116
  • Pérez - BuenoM L,et al. 2016. Temporal and Spatial Resolution of Activated Plant Defense Responses in Leaves of Nicotiana benthamiana Infected withDickeya dadantii. Front Plant Sci. 6, 1209
  • MazurR,et al. 2016. Overlapping toxic effect of long term thallium exposure on white mustard (Sinapis albaL.) photosynthetic activity. BMC Plant Biology 16, 191
  • PiršelováB,et al. 2016. Effect of cadmium and arsenic on chlorophyll fluorescence of selected soybean c*rs. Russ J Plant Physiol 63, 469
  • EilersU,et al. 2016. Identification of genes coding for functional zeaxanthin epoxidases in the diatomPhaeodactylum tricornutum. Journal of Plant Physiology 192(15),64-70
  • SelloS,et al. 2016. Dissecting stimulus-specific Ca2+ signals in amyloplasts and chloroplasts ofArabidopsis thalianacell suspension cultures. J. Exp. Bot. DOI: 10.1093/jxb/erw038
  • MarečkováM,et al. 2016. Effects of short-term low temperature stress on chlorophyll fluorescence transients in Antarctic lichen species.Czech Polar Reports 6 (1), 54-65
  • Jian Minfei, Wang Sichen, Yu Houping, Li Lingyu, Jian Meifeng, Yu2016. Cd2+、Cu2+Coercion against black algae(Hydrilla verticillata)The influence of growth and photosynthetic fluorescence characteristics Journal of Ecology36(6)
  • RusachonekA,et al. 2015. Role of phytochromes A and B in the regulation of cell death and acclimatory responses to UV stress inArabidopsis thaliana. Journal of Experimental Botany DOI: 10.1093/jxb/erv375
  • ZengY,et al. 2015. Characterization of the microaerophilic, bacteriochlorophyll a-containing bacteriumGemmatimonas phototrophicasp. nov., and emended descriptions of the genus Gemmatimonas andGemmatimonas aurantiaca. International Journal of Systematic and Evolutionary Microbiology,DOI: 10.1099/ice.0.000272
  • BeikeA K,et al. 2015. Insights from the cold transcriptome ofPhyscomitrella patens: global specialization pattern of conserved transcriptional regulators and identification of orphan genes involved in cold acclimation. New Phytologist 205, 869-881
  • MalesM,et al. 2015. Preliminary investigation of combined laser and microwave treatment for stone biodeterioration. Studies in Conservation 60:sup1,19-27
  • OuibrahimL,et al. 2015. Potyviruses differ in their requirement for TOR signaling. Journal of General Virology 96, 2898-2903
  • StatelmanO,et al. 2015. The effect of UV-B on Arabidopsis leaves depends on light conditions after treatment. BMC Plant Biology 15,281
  • ThangarajG,et al. 2015. Antarctic strain of green filamentous algaZygnemasp. shows a high resistance to photoinhibition under simulated polar conditions. Czech Polar Reports 5 (2),176-184
  • PinnolaA,et al. 2015. Heterologous Expression of Moss Light-harvesting Complex Stress-related 1 (LHCSR1), the Chlorophyll a-Xanthophyll Pigment-protein Complex Catalyzing Non-photochemical Quenching, inNicotianasp. The Journal of Biological Chemistry 290, 24340-24354
  • DłużewskaJ,et al. 2015. New prenyllipid metabolites identified in Arabidopsis during photo‐oxidative stress.Plant, Cell & Environment 38(12),2698-2706
  • ScibiliaL,et al. 2015. Photosynthetic response to nitrogen starvation and high light inHaematococcus pluvialis. Algal Research 12, 170-181
  • Lizard CastleMG,et al. 2015. Contribution of the non-effector members of the HrpL regulon, iaaL and matE, to the virulence of Pseudomonas syringae pv. tomato DC3000 in tomato plants. BMC Microbiology 15,165
  • RohnS,et al. 2015. Impact of cold atmospheric pressure plasma on physiology and flavonol glycoside profile of peas (Pisum sativum'Salamanca'). Food Research International 76(1),132-141
  • ViolinE,et al. 2015. Allelopathic Effect of Aqueous Extracts from the Leaves of Peppermint. Botanic Notes Horti Agrobotanici Cluj-Napoca43(2), 335-342
  • YooSY,et al. 2015. Application of Chlorophyll a Fluorescence Imaging Analysis for Selection of Rapid Frozen Sweet Persimmon Fruits. Korean Journal of Environmental Agriculture 34(3),210-216
  • MatsuoM,et al. 2015. REDOX RESPONSIVE TRANSCRIPTION FACTOR1 is involved in age-dependent and systemic stress signaling. Journal Plant Signaling & Behavior 10(11), , //dx.doi.org/10.1080/15592324.2015.1051279
  • PinnolaA,et al. 2015. Light-Harvesting Complex Stress-Related Proteins Catalyze Excess Energy Dissipation in Both Photosystems of Physcomitrella patens. The Plant Cell27(11),3213-3227
  • AugustynowiczJ,et al. 2015. Potential for chromium (VI) bioremediation by the aquatic carnivorous plantUtricularia gibbaL. (Lentibulariaceae). Environmental Science and Pollution Research 22(13), 9742-9748
  • BordersP,et al. 2015. Cysteine-rich receptor-like kinase CRK5 as a regulator of growth, development, and ultraviolet radiation responses inArabidopsis thaliana. J. Exp. Bot. doi:10.1093/jxb/erv143
  • BeikeA K,et al. 2015. Insights from the cold transcriptome ofPhyscomitrella patens, global specialization pattern of conserved transcriptional regulators and identification of orphan genes involved in cold acclimation. New Phytologist 205,869–881
  • BetterleN,et al. 2015. High Light-Dependent Phosphorylation of Photosystem II Inner Antenna CP29 in Monocots Is STN7 Independent and Enhances Nonphotochemical Quenching. Plant Physiology 167(2),457-471
  • RooijenR,et al. 2015. Natural Genetic Variation for Acclimation of Photosynthetic Light Use Efficiency to Growth Irradiance inArabidopsis. Plant Physiology 167, 1412–1429
  • CrassusU,et al. 2015. Switch from heterotrophy to autotrophy of apple cotyledons depends on NO signal. Plant,DOI: 10.1007/s00425-015-2361-x
  • KhanalN,et al. 2015. Acquisition of freezing tolerance in Arabidopsis and two contrasting ecotypes of the extremophileEutrema salsugineum(Thellungiella salsuginea). Journal of Plant Physiology 180, 35–44
  • SzymańskaR,et al. 2015. Physiological and antioxidant responses of two accessions ofArabidopsis thalianain different light and temperature conditions. Physiologia Plantarum 154(2),194–209
  • TanakaH,et al. 2015. Transcriptional control of vitamin C defective 2 and tocopherol cyclase genes by light and plastid-derived signals, The partial involvement of GENOMES UNCOUPLED 1. Plant Science 231, 20–29
  • KasajimaI,et al. 2015. Collective Calculation of Actual Values of Non-Photochemical Quenching from Their Apparent Values after Chloroplast Movement and Photoinhibition. American Journal of Plant Sciences 6, 1792-1805
  • MaglovskiM,et al. 2015. Negative effect of metalloid stress on wheat. Journal of Microbiology, Biotechnology and Food Sciences 4(2),76-78
  • MaslaňákováI,et al. 2015. Differences Between Sensitivity of Mycobiont and Photobiont ofCladoniasp. Lichens to Different Types of Nitrogen Exposure. Water, Air, & Soil Pollution,DOI: 10.1007/s11270-015-2512-5
  • HighM,et al. 2015. Plants Possess a Cyclic Mitochondrial Metabolic Pathway similar to the Mammalian Metabolic Repair Mechanism Involving Malate Dehydrogenase and L-2hydroxyglutarate Dehydrogenase. Plant Cell Physiol.,DOI: 10.1093/pcp/pcv108
  • IbarakiY,et al. 2015. Image analysis for plants, basic procedures and techniques. Plant image analysis. Fundamentals and applications
  • VaculíkM,et al. 2015. Silicon alleviates cadmium toxicity by enhanced photosynthetic rate and modified bundle sheath's cell chloroplasts ultrastructure in maize. Ecotoxicology and Environmental Safety 120, 66–73
  • HuraT,et al. 2015. Rapid plant rehydration initiates permanent and adverse changes in the photosynthetic apparatus of triticale. Plant Soil,DOI 10.1007/s11104-015-2607-1
  • BarbosaA M,et al. 2015. Biomass and bioenergy partitioning of sugarcane plants under water deficit. Plant Physics Act,DOI: 10.1007/s11738-015-1887-7
  • SilesianI,et al. 2015. PHYTOALEXIN DEFICIENT  4 affects reactive oxygen species metabolism, cell wall and wood properties in hybrid aspen (Populus tremulaL. ×tremuloides). Plant, Cell & Environment 38(7),1275–1284
  • BußlerS,et al. 2015. Impact of cold atmospheric pressure plasma on physiology and flavonol glycoside profile of peas (Pisum sativum‘Salamanca’). Food Research International 76(1), 132–141
  • Velez-RamirezA,et al. 2015. Continuous-light tolerance in tomato is graft-transferable. Plant 241(1), 285-290
  • Close tabK,et al. 2015. D1 fragmentation in photosystem II repair caused by photo-damage of a two-step model. Photosynthesis Research,DOI: 10.1007/s11120-015-0144-7
  • GranumE,et al. 2015. Metabolic responses of avocado plants to stress induced byRosellinia necatrixanalysed by fluorescence and thermal imaging. Eur J Plant Pathol,DOI 10.1007/s10658-015-0640-9
  • MizokamiY,et al. 2015. Mesophyll conductance decreases in the wild type but not in an ABA-deficient mutant (aba1) ofNicotiana plumbaginifoliaunder drought conditions. Plant, Cell & Environment 38(3), 388–398
  • DooleyF D,et al. 2015. Tolerance ofPhyllospadix scouleriseedlings to hydrogen sulfide. Aquatic Botany 123,72–75
  • QuaasT,et al. 2015. Non-photochemical quenching and xanthophyll cycle activities in six green algal species suggest mechanistic differences in the process of excess energy dissipation. Journal of Plant Physiology 172,92–103
  • Pérez - BuenoM L,et al. 2015. Spatial and temporal dynamics of primary and secondary metabolism in Phaseolus vulgaris challenged by Pseudomonas syringae. Physiologia Plantarum 153,161–174
  • Marcos A de,et al. 2015. Transcriptional profiles ofArabidopsisstomataless mutants reveal developmental and physiological features of life in the absence of stomata. Front Plant Sci. DOI: 10.3389/fpls.2015.00456
  • The SonA,et al. 2015. Early physiological response of broccoli leaf to foliar application of clove oil and its main constituents. Industrial Crops and Products 74, 523–529
  • OsticioliI,et al. 2015. Removal ofBlack Seafrom Carrara marble artefacts using Nd, YAG lasers, comparison among different pulse durations and wavelengths. Appl. Phys. A,DOI 10.1007/s00339-014-8933-y
  • JedmowskiC,et al. 2015. Imaging of fast chlorophyll fluorescence induction curve (OJIP) parameters, applied in a screening study with wild barley (Spontaneous Hordeum) genotypes under heat stress. Journal of Photochemistry and Photobiology B, Biology,DOI: 10.1016/j.jphotobiol.2015.07.020
  • VercruyssenL,et al. 2015. GROWTH REGULATING FACTOR5 Stimulates Arabidopsis Chloroplast Division, Photosynthesis, and Leaf Longevity. Plant Physiology167, 817–832
  • PetrzikK,et al. 2015. Platinum Anniversary, Virus and Lichen Alga Together More than 70 Years. PLOS ONE,DOI: 10.1371/journal.pone.0120768
  • RousseauC,et al. 2015. Phenoplant, a web resource for the exploration of large chlorophyll fluorescence image datasets. Plant Methods 11,24
  • LavialeM,et al. 2015. Response of intertidal benthic microalgal biofilms to a coupled light–temperature stress, evidence for latitudinal adaptation along the Atlantic coast of Southern Europe. Environmental Microbiology,DOI:10.1111/1462-2920.12728
  • EzequielJ,et al. 2015. Photoacclimation state determines the photobehaviour of motile microalgae, The case of a benthic diatom. Journal of Experimental Marine Biology and Ecology 468,11–20
  • SimkoI,et al. 2015. Detection of decay in fresh-cut lettuce using hyperspectral imaging and chlorophyllfluorescence imaging. Postharvest Biology and Technology 106,44–52
  • CornK,et al. 2015. Effect of drought stress induced by mannitol on physiological parameters of maize (ZeamaysL.) Seedlings And Plants. J Microbiol Biotech Food Sci 4,86-91
  • TietzS,et al. 2015. Functional Implications of Photosystem II Crystal Formation in Photosynthetic Membranes. Journal of biological chemistry,DOI:10.1074/jbc. M114.619841
  • BaierM,et al. 2015. Impact of plasma processed air (PPA) on quality parameters of fresh produce. Postharvest Biology and Technology 100,120–126
  • BourdaisG,et al. 2015. Large-Scale Phenomics Identifies Primary and Fine-Tuning Roles for CRKs in Responses Related to Oxidative Stress. PLoS Genet 11(7),e1005373. DOI: 10.1371/journal.pgen.1005373
  • FujiseL,et al. 2015. Moderate Thermal Stress Causes Active and Immediate Expulsion of Photosynthetically Damaged Zooxanthellae (Symbiodinium) from Corals. PLoS ONE 9(12),e114321. DOI: 10.1371/journal.pone.0114321
  • Kong L.et al.2015. Photochemical and antioxidative responses of the glume and flag leaf to seasonal senescence in wheat. Frontiers in Plant Science,6, 358. DOI: 10.3389/fpls.2015.00358
  • Leal M C,et al.2015. Concurrent imaging of chlorophyll fluorescence, Chlorophyll a content and green fluorescent proteins-like proteins of symbiotic cnidarians. Marine Ecology,DOI: 10.1111/maec.12164
  • Jian Minfei, Wang Sichen, Yu Houping, Li Lingyu, Jian Meifeng, Yu two thousand and fifteen Photosynthetic Fluorescence Characteristics of Living Submerged Plants in the Jishan Wetland of Poyang Lake, Hunan ProvinceJournal of Resources and Ecology,6(1),052-059
  • JianMF,et al. 2015. Characteristics of Photosynthetic Fluorescence of Dominant Submerged Plants in Nanjishan Wetland of Poyang Lake in Winter. Meteorological and Environmental Research, 6(2), 20-24
  • Zhou Jinye, Ding Guochang, He Jingzhou, Cao Guangqiu, Li Xiuling, Bu Chaoyang two thousand and fifteen The effect of different light qualities on chlorophyll content and chlorophyll fluorescence parameters of tissue cultured lotus seedlings Journal of Agronomy 5 (5), 67-72
  • Hao Jie, Ruan Shaoning, Lin Sizu, Zhang Tao, Xue Mingyu, Ding Hengxian two thousand and fifteen The effect of iron and titanium ion implantation on chlorophyll fluorescence parameters and chlorophyll content of Chinese fir seedlings Journal of Radiation Research and Radiation Technology, 33
  • RenR,et al. 2015. Comparative aggressiveness ofMicrodochium level andMr. Majusand evaluation of screening methods for Fusarium seedling blight resistance in wheat c*rs. Eur J Plant Pathol,141,281–294
  • Wituszyńska W. et al. 2015. LESION SIMULATING DISEASE 1 and ENHANCED DISEASE SUSCEPTIBILITY 1 differentially regulate UV-C-induced photooxidative stress signalling and programmed cell death inArabidopsis thaliana. Plant, Cell & Environment,DOI: 10.1111/pce.12288
  • FanX.et al. 2015. The NdhV subunit is required to stabilize the chloroplast NADH dehydrogenase-like complex inArabidopsis. The Plant Journal,82, 221–231
  • SehnalL,et al. 2014. Effect of temperature and increased concentration of CO2 on growth and photosynthetic activity of polar algaTrebouxiasp. Czech Polar Reports 4 (1), 47-56
  • BrabandH,et al. 2014. FPSII and NPQ to evaluateBremia lactucae-infection in susceptible and resistant lettuce c*rs. Horticulture science 180, 123–129
  • BAlarinK,et al. 2014. Changes in photosynthesis, pigment composition and glutathione contents in two Antarctic lichens during a light stress and recovery. Photosynthetica 52(4), 538-547
  • JohnsonS M,et al. 2014. Transcriptomic analysis ofSorghum bicolor responding to combined heat and drought stress. BMC Genomics, 15, 456
  • MishraA,et al. 2014. Chlorophyll fluorescence emission can screen cold tolerance of cold acclimatedArabidopsis thalianaaccessions. Plant Methods 10, 38,DOI: 10.1186/1746-4811-10-38
  • SchmollingerS,et al. 2014. Nitrogen-Sparing Mechanisms inChlamydomonasAffect the Transcriptome, the Proteome, and Photosynthetic Metabolism. The Plant Cell 26(4),1410-1435
  • FristedtR,et al. 2014. RBF1, a Plant Homolog of the Bacterial Ribosome-Binding Factor RbfA, Acts in Processing of the Chloroplast 16S Ribosomal RNA. Plant Physiology 164, 201–215
  • TakáčT,et al. 2014. Proteomic and Biochemical Analyses Show a Functional Network of Proteins Involved in Antioxidant Defense of theArabidopsisanp2anp3 Double Mutant. J. Proteome Res. 13 (12), 5347–5361
  • RiceM,et al. 2014. Comparison of a compatible and an incompatible pepper-tobamovirus interaction by biochemical and non-invasive techniques, Chlorophyll a fluorescence, isothermal calorimetry and FT-Raman spectroscopy. Plant Physiology and Biochemistry 83, 267–278
  • OrderP,et al. 2014. Mycorrhizal fungi modulate phytochemical production and antioxidant activity ofCichorium intybusL. (Asteraceae) under metal toxicity. Chemosphere 112, 217–224
  • NuruzzamanM,et al. 2014. Does the Upstream Region Possessing MULE-Like Sequence in Rice Upregulate PsbS1 Gene Expression? PLoS ONE 9(9), e102742. DOI: 10.1371/journal.pone.0102742
  • CharmS,et al. 2014. Stomatal malfunctioning under low VPD conditions, induced by alterations in stomatal morphology and leaf anatomy or in the ABA signaling? Physiologia Plantarum 152(4),688–699
  • WinglerA,et al. 2014. Adaptation to altitude affects the senescence response to chilling in the perennial plantArabis alpine. J. Exp. Bot. DOI: 10.1093/jxb/eru426
  • Pérez - BuenoM L,et al. 2014. Diagnosis of the Infection of Sunflower byOrobanche cumanaUsing Multicolour Fluorescence imaging. HELIA 37(61),173–179
  • MalčovskáS M,et al. 2014. Effect of Silicon on Growth, Photosynthesis, Oxidative Status and Phenolic Compounds of Maize (Zea maysL.) Grown in Cadmium Excess. DOI: 10.1007/s11270-014-2056-0
  • GuptaE,et al. 2014. Evolutionary legacy response observed in algae and bryophytes following hydrogen sulfide administration. Toxicological & Environmental Chemistry 96(3), 442-450
  • YoshizawaE,et al. 2014. BPG3 is a novel chloroplast protein that involves the greening of leaves and related to brassinosteroid signaling. Bioscience, Biotechnology, and Biochemistry 78(3)
  • Velez-RamirezA I,et al. 2014. A single locus confers tolerance to continuous light and allows substantial yield increase in tomato. Nature communications,DOI: 10.1038/ncomms5549
  • TrnkováK,et al. 2014. Changes in spectral properties and chlorophyll fluorescence of Nostoc commune colonies from Svalbard during dehydration and supplemental UV-B stress. In Jan Kavan, Alexandra Bernardová. Polar Ecology Conference 2014. České Budějovice, Neuveden, 149-150
  • KurendaA,et al. 2014. VIS/NIR spectroscopy, chlorophyllfluorescence, biospeckle and backscattering to evaluate changes in apples subjected to hydrostatic pressures. Postharvest Biology and Technology 96,88–98
  • ArmbrusterU,et al. 2014. Ion antiport accelerates photosynthetic acclimation in fluctuating light environments.Nature Communications,DOI: 10.1038/ncomms6439
  • GongB.et al. 2014. Overexpression of S-adenosyl-L-methionine synthetase increased tomato tolerance to alkali stress through polyamine metabolism. Plant Biotechnology Journal,12, 694–708
  • ZengY,et al. 2014. Functional type 2 photosynthetic reaction centers found in the rare bacterial phylum Gemmatimonadetes. PNAS, 111(21),7795–7800
  • Sung Yung Yoo,et al. 2014. Chlorophyll a Fluorescence Imaging Analysis in Air-Drying Stressed Sorghum (Sorghum bicolorL.) Leaf. International Journal of Advanced Agricultural Sciences and Technology,2(1),58-66
  • ContiS,et al. 2014. Comparative analysis of heterogeneity of primary photosynthetic processes within fruticose lichen thalli, Preliminary study of interspecific differences. Czech polar reports 4 (2),149-157
  • PuthiyaveetilS,et al.2014. Significance of the Photosystem II Core Phosphatase PBCP for Plant Viability and Protein Repair in Thylakoid Membranes. Plant Cell Physiol. DOI: 10.1093/pcp/pcu062
  • LeeS E,et al.2014. Proteomic evaluation of the response of soybean (Glycine max var Seoritae) leaves to UV-B. Plant Omics Journal 7(3), 123-132
  • PavlovicA,et al.2014. Feeding on prey increases photosynthetic efficiency in the carnivorous sundewDrosera capensis. Annals of Botany 113,69–78
  • ALinaeifard, S. et al. 2014.Natural variation in stomatal response to closing stimuli amongArabidopsis thalianaaccessions after exposure to low VPD as a tool to recognise the mechanism of disturbed stomatal functioning. J. Exp. Bot.
  • Furuhashi,T. et al. 2014. Morphological and plant hormonal changes during parasitization byCuscuta japonicaonMomordica charantia. Journal of Plant Interactions,9(1), 220-232. DOI: 10.1080/17429145.2013.816790
  • Hura, K.et al. 2014. Function of the photosynthetic apparatus of oilseed winter rape under elicitation by Phoma lingam phytotoxins in relation to carotenoid and phenolic levels. Plant Physics Act 36(2), two hundred and ninety-five – 305
  • Hey, K.et al.2014. Early detection ofPhomalingamInfection in Oilseed winter rape before visible symptoms appear. Acta biologica Cracoviensis Series Botanica 56(1), 59-65
  • Hida, E.et al.2014. Activity imaging photosynthetic of Populus X Canadensis Moench plants in air pollution. International J. Engineering Inventions. 3(8), 35-40
  • Hida, E.et al.2014. The influence of stress analyzed by the emitted fluorescence changes. IOSR J. Engineering. 4(4), 38-43
  • Baier,M. et al. 2014. Non-thermal atmospheric pressure plasma, Screening for gentle process conditions and antibacterial efficiency on perishable fresh produce. Innovative Food Science & Emerging Technologies, , //dx.doi.org/10.1016/j.ifset.2014.01.011
  • Bauriegel, E. et al. 2014. Hyperspectral and chlorophyll fluorescence imaging for early detection of plant diseases, with special reference to Fusarium spec. infections on wheat. Agriculture. 4, 32-57
  • Pavlovich A. et al. 2014. Feeding on prey increases photosynthetic efficiency in the carnivorous sundewDrosera capensis. Annals of Botany 113(1), 69 – 78
  • Fukuda S. et al. 2014. Difference in physiological responses of growth, photosynthesis and calcification of the coccolithophoreEmiliania huxleyito acidification by acid and CO2enrichment. Photosynthesis Research,DOI: 10.1007/s11120-014-9976-9
  • Corn K. et al. 2014. Allelopathic Influence Of Aqueous Extracts From The Leaves OfMorus AlbaL. On Seed Germination And Seedling Growth OfCucumissonL. AndChorusaLbaL. Modern Phytomorphology 5,93 – 99
  • PerinG. et al. 2014. Biotechnological Optimization of Light Use Efficiency in Nannochloropsis Cultures for Biodiesel Production. Chemical Engineering Transactions 37, 763-768
  • Rice S.K. et al. 2014. Structural and Functional Analyses of Bryophyte Canopies. Photosynthesis in Bryophytes and Early Land Plants 37,173 – 185
  • Gorecka M. et al. 2014. Abscisic acid signalling determines susceptibility of bundle sheath cells to photoinhibition in high light-exposedArabidopsisleaves. Philosophical Transactions of the Royal Society,DOI: 10.1098/rstb.2013.0234
  • Protector E. et al. 2014. Growth of streptomycetes in soil and their impact on bioremediation. Journal of Hazardous Materials 267, 128 – 135
  • Urban O. et al. 2014. Impact of elevated CO2 concentration on dynamics of leaf photosynthesis inFagus sylvaticais modulated by sky conditions. Environmental Pollution 185, 271 – 280
  • Pichrt M. et al. 2014. Osmotic stress and recovery in field populations ofZygnemasp. (Zygnematophyceae, Streptophyta) on Svalbard (High Arctic) subjected to natural desiccation. FEMS Microbiology Ecology,DOI: 10.1111/1574-6941.12288
  • Augustynowicz J. et al. 2014. Phytoremediation of Water Polluted by Thallium, Cadmium, Zinc, and Lead with the Use of MacrophyteCallitriche cophocarpa. Archives of Environmental Contamination and Toxicology,DOI: 10.1007/s00244-013-9995-0
  • Crop K.K. et al. 2014. Photosynthetic responses to temperature-mediated dormancy induction in contrasting ecotypes of red-osier dogwood (Cornus sericeaL.). Environmental and Experimental Botany, , //dx.doi.org/10.1016/j.envexpbot.2014.02.015
  • Necessary R. et al. 2014. Pattern of antioxidant enzyme activities and hydrogen peroxide content during developmental stages of rhizogenesis from hypocotyl explants ofMesembryanthemum crystallinumL. Plant Cell Reports 33(1),165 – 177
  • Bricker T.M. et al. 2014. Photoheterotrophic growth of Physcomitrella patens. Plant 239(3), six hundred and five – 613
  • Ichinose M,et al.2014. Identification of a pentatricopeptide repeat RNA editing factor inPhyscomitrella patens chloroplasts. FEBS Lett., , //dx.doi.org/10.1016/j.febslet. 2014.09.031
  • Kleinknecht L. et al. 2014. RAP, the Sole Octotricopeptide Repeat Protein in Arabidopsis, Is Required for Chloroplast 16S rRNA Maturation. The Plant Cell, , //dx.doi.org/10.1105/tpc.114.122853
  • Feng B. et al. 2014. Effect of Heat Stress on the Photosynthetic Characteristics in Flag Leaves at the Grain‐Filling Stage of Different Heat‐Resistant Winter Wheat Varieties.Journal of Agronomy and Crop Science 200(2),143 – 155
  • Liu W.et al. 2014. Synthetic TAL effectors for targeted enhancement of transgene expression in plants. Plant Biotechnology Journal 12,436–446
  • Murchie E.H.et al. 2013. Chlorophyll fluorescence analysis, a guide to good practice and understanding some new applications. Journal of Experimental Botany,DOI: 10.1093/jxb/ert208
  • Ferimazov N.et al. 2013. Regulation of photosynthesis during heterocyst differentiation in Anabaena sp. strain PCC 7120 investigated in vivo at single-cell level by chlorophyll fluorescence kinetic microscopy. Photosynthesis Research 116(1),79 – 91
  • Matsushima, U. 2013.3D-analysis of plant microstructures, advantages and limitations of synchrotron X-ray microtomography. Int. Agrophys. 27, 23-30
  • Jurczyk, B. et al. 2013. Different mechanisms trigger an increase in freezing tolerance inFestuca pratensisexposed to flooding stress. Environmental and Experimental Botany. 93, 45-54
  • Hanson, D. et al. 2013. Spatio-temporal decoupling of stomatal and mesophyll conductance induced by vein cutting in leaves of Helianthus annuus. Frontiers in Plant Science. 4, 1-9
  • Dooley F.D.et al. 2013. Tolerance and response of Zostera marina seedlings to hydrogen sulfide. Aquatic Botany 105,7 – 10
  • Marteinsson V.et al. 2013. A Laboratory of Extremophiles, Iceland Coordination Action for Research Activities on Life in Extreme Environments (CAREX) Field Campaign. Life,3(1),211 – 233
  • Dooley F.D.et al. 2013. Increased Growth and Germination Success in Plants following Hydrogen Sulfide Administration. PloS one,DOI: 10.1371/journal.pone.0062048
  • BianconiD.et al. 2013. Uptake of Cadmium by Lemna minor, a (hyper-) accumulator plant involved in phytoremediation applications. E3S Web of Conferences 1
  • BelinOh, yeah.et al. 2013. Thermography versus chlorophyll fluorescence imaging for detection and quantification of apple scab. Computers and Electronics in Agriculture 90,159 – 163
  • Peng H.et al. 2013. Toxicity and deficiency of copper insplendent lightaffect photosynthesis biophysics, pigments and metal accumulation. Environ. Sci. Technol. , 47 (12), 6120 – 6128
  • VredenbergW.et al. 2013. Chlorophyll a fluorescence induction (Kautsky curve) in a Venus flytrap (Music Player) leaf after mechanical trigger hair irritation. Journal of Plant Physiology 170(3), two hundred and forty-two – 250
  • Choe Y.H.et al. 2013. Homologous expression of γ-glutamylcysteine synthetase increases grain yield and tolerance of transgenic rice plants to environmental stresses. Journal of Plant Physiology 170(6), six hundred and ten – 618
  • Chen Yu 2013.Preliminary exploration of Pingyangmycin induced mutations and cold tolerance of Eucalyptus urophylla mutants Subtropical Agriculture Research 9 (3), 173– 176
  • Novak J.et al. 2013. High cytokinin levels induce a hypersensitive-like response in tobacco. Annals of Botany 112(1),41 – 55
  • Rousseau C. et al. 2013. High throughput quantitative phenotyping of plant resistance using chlorophyll fluorescence image analysis. Plant Method, 9, 17
  • LuoT.et al. 2013. Virus-induced gene silencing of pea CHLI and CHLD affects tetrapyrrole biosynthesis, chloroplast development and the primary metabolic network. Plant Physiology and Biochemistry 65,17 – 26
  • Glaesener A.G.et al. 2013. Iron economy in Chlamydomonas reinhardtii. Front Plant Sci. 4, 337
  • Chojnicki B.H.et al. 2013. Spectral estimation of wetland carbon dioxide exchange. International Agrophysics27(1), 1– 79
  • Pilate,Z. et al. 2013. Optical trapping of microalgae at 735–1064 nm, Photodamage assessment. Journal of Photochemistry and Photobiology B, Biology121, 27 – 31
  • Martin,C.E. et al. 2013. Responses of epidermal cell turgor pressure and photosynthetic activity of leaves of the atmospheric epiphyteTillandsia usneoides(Bromeliaceae) after exposure to high humidity. Journal of Plant Physiology 170(1), seventy–73
  • Wituszyńska,W. et al. 2013. M*riable environmental conditions promote photosynthetic adaptation potential inArabidopsis thaliana. Journal of Plant Physiology 170(6), five hundred and forty-eight – 559
  • Borek,M. et al. 2013. Chlorophyll fluorescence imaging of cadmium–treated white cabbage plants. E3S Web of Conferences 1
  • Hair,B. et al. 2013. Chlorophyll fluorescence imaging of photosynthetic activity and pigment contents of the resurrection plantsRamonda serbicaandRamonda Nathaliaeduring dehydration and rehydration. Physiology and Molecular Biology of Plants 19(3), three hundred and thirty-three – 341
  • Baier,M. et al. 2013. Direct non–thermal plasma treatment for the sanitation of fresh corn salad leaves, Evaluation of physical and physiological effects and antimicrobial efficacy. Postharvest Biology and Technology84, 81 – 87
  • Matsushima,U. et al. 2013. 3D–analysis of plant microstructures, advantages and limitations of synchrotron X–ray microtomography. International Agrophysics 27(1), twenty-three – 30
  • Gavronski,P. et al. 2013. Isochorismate synthase 1 is required for thylakoid organization, optimal plastoquinone redox status, and state transitions inArabidopsis thaliana. Journal of Experimental Botany64(12),3669 – 3679
  • Jurczyk,B. et al. 2013. Short–term growth of meadow fescue with atmospheric CO2enrichment decreases freezing tolerance, modifies photosynthetic apparatus performance and changes the expression of some genes during cold acclimation. Plant Physics Act 35(5), one thousand five hundred and forty-three – 1554
  • Jurczyk,B. et al. 2013. Different mechanisms trigger an increase in freezing tolerance inFestuca pratensisexposed to flooding stress. Environmental and Experimental Botany 93, 45 – 54
  • Ellawala.,C. et al. 2013. Water movement induced variations in growth regulation and metabolism of freshwater macrophyteVallisneria spiralisL. in early growth stages. Hydrobiologia 709(1), one hundred and seventy-three – 182
  • Light holder,H.K. et al. 2013. Uptake of diuron and concomitant loss of photosynthetic activity in leaves as visualized by imaging the red chlorophyll fluorescence. Photosynthesis Research 116(2-3), 355-361
  • Osticioli, I.et al. 2013. Potential of chlorophyll fluorescence imaging for assessing bio–viability changes of biodeteriogen growths on stone monuments,Proc. SPIE 8790,Optics for Arts, Architecture, and Archaeology IV
  • Light,D. et al. 2013. pAUL, A Gateway–Based Vector System for Adaptive Expression and Flexible Tagging of Proteins in Arabidopsis. PLoS ONE8(1)
  • Mattila,H. et al. 2013. Comparison of chlorophyll fluorescence curves and texture analysis for automatic plant identification. Precision Agriculture
  • Li,X. et al. 2013. Molecular Cloning and Characterization of Violaxanthin De–Epoxidase (CsVDE) in Cucumber. PLoS ONE8(5), 1-11
  • Tung,J. et al. 2013. Chlorophyll fluorescence for quantification of fungal foliar infection and assessment of the effectiveness of an induced systemic resistance activator. European Journal of Plant Pathology136(2), three hundred and one – 315
  • Hanson,D.T. et al. 2013. Spatio–temporal decoupling of stomatal and mesophyll conductance induced by vein cutting in leaves ofHelianthus annuus. Front Plant Sci. 4,365
  • Malasarn,D. et al. 2013. Zinc deficiency impacts CO2 assimilation and disrupts copper homeostasis inChlamydomonas reinhardtii. Journal of Biological Chemistry 288, 10672 – 10683
  • Hirth,M. et al. 2013. Photosynthetic acclimation responses of maize seedlings grown under artificial laboratory light gradients mimicking natural canopy conditions. Front Plant Sci. 4,334
  • Block,A. et al. 2013. Functional Modeling Identifies Paralogous Solanesyl–diphosphate Synthases That Assemble the Side Chain of Plastoquinone–9 in Plastids,Journal of Biological Chemistry 288, 27594 – 27606
  • Nagai,M. et al. 2013. Ion gradients in xylem exudate and guttation fluid related to tissue ion levels along primary leaves of barley. Plant, Cell & Environment 36(10), one thousand eight hundred and twenty-six – 1837
  • Oakenfull,R.J. et al. 2013. A C–Repeat Binding Factor Transcriptional Activator (CBF/DREB1) from European Bilberry (Vaccinium myrtillus) Induces Freezing Tolerance When Expressed inArabidopsis thaliana. PLoS ONE8(1)
  • Ciszewski,D. et al. 2013. Small effects of a large sediment contamination with heavy metals on aquatic organisms in the vicinity of an abandoned lead and zinc mine. Environmental Monitoring and Assessment 185,9825 – 9842
  • Bae,M.J. et al. 2013. Transgenic rice overexpressing theBrassica junceagamma–glutamylcysteine synthetase gene enhances tolerance to abiotic stress and improves grain yield under paddy field conditions. Molecular Breeding 31(4), nine hundred and thirty-one – 945
  • Svubova,R. et al. 2013. European Cuscoplastid apparatus in various developmental stages, Localization of THF1 protein. Plant Signal 8(5)
  • SerôdioJ,et al. 2013. A Method for the Rapid Generation of Nonsequential Light-Response Curves of Chlorophyll Fluorescence. Plant Physiology 163, 1089-1102
  • Ogawa,T. et al. 2013. Disruption of the ndhF1 gene affects Chl fluorescence through state transition in theCyanobacterium Synechocystissp. PCC 6803, resulting in apparent high efficiency of photosynthesis. Plant Cell Physiol. 54(7),1164 – 1171
  • Lepage,E. et al. 2013. Plastid Genome Instability Leads to ROS Production and Plastid–to–Nucleus Retrograde Signaling in Arabidopsis. Plant Physiology
  • Seubma, P. et al. 2012.Effects of High Temperature Exposure on Chlorophyll Fluorescence of Phalaenopsis Leaves. CMU. J. Nat. Sci. Special Issue on Agricultural&Natural Resources. 11(1), 409-420
  • Bellasio, C., Olejníčková, J., Carpenter, R., Shebela, D. & Nedbal, L.2012. Computer Reconstruction of Plant Growth and Chlorophyll Fluorescence Emission in Three Spatial Dimensions.Sensors12, 1052 – 1071
  • Irina SMEU. 2012.Quality Attributes Of Fresh-Cut Lettuce Treated With Cold Plasma. Scientific Bulletin, Series F, Biotechnologies, 18, 164– 171
  • Hebbelmann, I.et al. 2012. Multiple strategies to prevent oxidative stress inArabidopsisplants lacking the malate valve enzyme NADP–malate dehydrogenase.Journal of experimental botany63, 1445 – 1459
  • Kato, Y., Kouso, T. & Sakamoto, W. 2012. Variegated tobacco leaves generated by chloroplast ftsh suppression, implication of ftsh function in the maintenance of thylakoid membranes.Plant and cell physiology53, 391 – 404
  • Łabuz, J., Sztatelman, O., Banaś, A. K. & Gabryś, H. 2012.The expression of phototropins inArabidopsisleaves, developmental and light regulation.Journal of experimental botany63, 1763 – 1771
  • Maruta, T.et al.2012. H2O2–triggered retrograde signaling from chloroplasts to nucleus plays a specific role in the response to stress.Journal of Biological Chemistry287, 11717 – 11729
  • Maruta, T.et al.2012. An Arabidopsis FAD Pyrophosphohydrolase, AtNUDX23, is Involved in the Flavin Homeostasis.Plant and cell physiology53 (6), 1106 – 1116.
  • Matrosova, A. 2012. The role of ht1 protein kinase in red light–induced stomatal opening.Department of Botany,Stockholm University
  • Mishra, K. B.et al.2012. Engineered drought tolerance in tomato plants is reflected in chlorophyll fluorescence emission.Plant Science182, 79 – 86
  • KimC,et al. 2012. Chloroplasts ofArabidopsisAre the Source and a Primary Target of a Plant-Specific Programmed Cell Death Signaling Pathway. The Plant Cell, 24,3026–3039
  • Stella Hubbart, Olubukola O. Ajigboye1, Peter Horton, Erik H. Murchie. 2012. The photoprotective protein PsbS exerts control over CO2assimilation rate in fluctuating light in rice.The Plant Journal71(3), 402 – 412
  • Silva‐Cancino, M. C., Esteban, R., Artetxe, U. & Plazaola, J. I. G. 2012. Patterns of spatio‐temporal distribution of winter chronic photoinhibition in leaves of three evergreen Mediterranean species with contrasting acclimation responses.Physiologia Plantarum 144(3), 289–301
  • Tříska, J., Vrchotová, N., Olejníčková, J., Jílek, R. & Sotolář, R. 2012. Separation and Identification of Highly Fluorescent Compounds Derived from trans–Resveratrol in the leaves ofVitis viniferainfected byPlasmopara viticola. Molecules17, 2773 – 2783
  • Wingler, A.et al.2012. Trehalose 6–phosphate is required for the onset of leaf senescence associated with high carbon availability.Plant physiology 158(3),1241–1251
  • Eriola,Z.H. et al. 2012. Effect of steel plant pollution on photosynthetic apparatus of some spontaneous plants by chlorophyll fluorescence imaging. 3rd International Symposium on Sustainable Development, eighty-seven– 94
  • Zeng Lingjie, Lin Maozi, Li Zhenfang, Dai Linquan, Li Ji, Li Jingjing two thousand and twelve The effect of continuous cropping on photosynthesis and medicinal quality of Panax ginsengJournal of Crop Science 38(8),1522 – 1528
  • Baba,M. et al.2012. Wavelength specificity of growth, photosynthesis, and hydrocarbon production in the oil–producing green algaBotryococcus braunii. Bioresource Technology 109, 266–270
  • Elster,J. et al.2012. Impact of warming onNostoc colonies(Cyanobacteria) in a wet hummock meadow, Spitsbergen. Polish Polar Research 33(4), three hundred and ninety-five – 420
  • White,C. et al.2012. Effects of rare codon clusters on the expression of a high–turnover chloroplast protein in Chlamydomonas reinhardtii. Journal of Biotechnology 160(3–4), one hundred and five – 111
  • News,B. et al.2012. Ultrastructural and metabolic modifications at the plant–pathogen interface inMesembryanthemum crystallinumleaves infected byBotrytis cinerea. Environmental and Experimental Botany 77, 33 – 43
  • Kong,L. et al.2012. High Nitrogen Rate Inhibits Proteolysis and Decreases the Export of Leaf Pre–stored Proteins to Grains in Wheat (Tritical aesthetics). Int. J. Agric. Biol. 14,1009 – 1013
  • Li,G. et al. 2012. Effects of nitrogen on photosynthetic characteristics of leaves from two different stay-green corn (Zea mays L.) varieties at the grain-filling stage. Can. J. Plant Sci. 92, 671-680
  • Kim, B. H., Malec, P., Waloszek, A. & von Arnim, A. G.2012. ArabidopsisBPG2, a phytochrome–regulated gene whose protein product binds to plastid ribosomal RNAs.Plant, 1 – 14.
  • Medeiros,J.S. et al.2012. Variation in seedling freezing response is associated with climate in Larrea. Oecology 169(1), seventy-three–84
  • Ning Shuju, Zhang Yingjiao, Lin Jianyong, Wei Daozhi two thousand and twelve The influence of light intensity on the photosynthetic characteristics of Fujian horse blue Chinese Journal of Ecological Agriculture20(7),901–908
  • Dietzel, L.et al. 2011. Photosystem II supercomplex remodeling serves as an entry mechanism for state transitions inArabidopsis. The plant cell online23, 2964 – 2977
  • Ellawala, C., Asaeda, T. & Kawamura, K.2011. Influence of flow turbulence onChara fibrosa, growth, stress, and tissue carbon content.Journal of Freshwater Ecology26, 507 – 515
  • KocurekV,et al. 2011. Efficacy of reduced doses of bentazone assessed by instruments based on measurement of chlorophyll fluorescence. Acta Univ. Agric. Silvic. Mendelianae Brun. 59, 137-144
  • Fernández–Marín, B., Míguez, F., Becerril, J. M. & García–Plazaola, J. I.2011. Activation of violaxanthin cycle in darkness is a common response to different abiotic stresses, a case study inPelvetia canaliculata. BMC plant biology11, 181
  • Gabara, B., Kuźniak, E., Skłodowska, M., Surówka, E. & Miszalski, Z.2011. Ultrastructural and metabolic modifications at the plant–pathogen interface in Mesembryanthemum crystallinum leaves infected by bOtrytis Cinderella. Environmental and Experimental Botany
  • Gabilly, S. T.et al. 2011. A novel component of the disulfide–reducing pathway required for cytochrome c assembly in plastids.Genetics187, 793 – 802
  • Gómez, F.et al. 2011. Multidisciplinary integrated field campaign to an acidic Martian Earth analogue with astrobiological interest, Rio Tinto.International Journal of Astrobiology10, 291–305
  • For us, R.et al. 2011. Retinoblastoma–related protein controls the transition to autotrophic plant development.Development138, 2977 – 2986
  • Higuchi–Takeuchi, M.et al.2011. Functional Analysis of Two Isoforms of Leaf–Type Ferredoxin–NADP+–Oxidoreductase in Rice Using the Heterologous Expression System ofArabidopsis. Plant physiology157, 96 – 108
  • Hossain, K., Nakamura, T. & Yamasaki, H. 2011. Effect of nitric oxide on leaf non–photochemical quenching of fluorescence under heat–stress conditions.Russian Journal of Plant Physiology58, 629 – 633
  • Hura, T., Hura, K. & Grzesiak, M. 2011. Soil drought applied during the vegetative growth of triticale modifies the physiological and biochemical adaptation to drought during the generative development.Journal of Agronomy and Crop Science197, 113 – 123
  • Jančula, D., Maršálková, E. & Maršálek, B. 2011. Organic flocculants for the removal of phytoplankton biomass.Aquaculture International, one – 10
  • Kenny, P., Deák, Z., Csôsz, M., Purnhauser, L. & Vass, I. 2011. Characterization and early detection of tan spot disease in wheat in vivo with chlorophyll fluorescence imaging.Acta Biologica Szegediensis55, 87 – 90
  • Kvíderová, J., Elster, J. & Šimek, M. 2011. In situ response ofWe're all in commonsl colonies to desiccation in Central Svalbard, Norwegian High Arctic.Fottea11(1), 87 – 97
  • Oxygen, H.et al.2011. Photosynthetic alterations of pea leaves infected systemically by pea enation mosaic virus, A coordinated decrease in efficiencies of CO2assimilation and photosystem II photochemistry.Plant Physiology and Biochemistry49(11), 1279 – 1289
  • Leitenmaier, B. & Küpper, H. 2011.Cadmium uptake and sequestration kinetics in individual leaf cell protoplasts of the Cd/Zn hyperaccumulatorThlaspi caerulescens. Plant, Cell & Environment34, 208 – 219
  • MajlathI,et al. 2011. At mutation may induce temperature acclimation mechanisms inArabidopsis thaliana. Acta Biologica Szegediensis 55(1),113-115
  • Majláth, I., Szalai, G., Papp, I., Vanková, R. & Janda, T. 2011.AtmutantArabidopsisplants induce compensation mechanisms to reduce the negative effects of the mutation.Journal of plant physiology168(11), 1184 – 1190
  • Medeiros, J. S., Marshall, D. L., Maherali, H. & Pockman, W. T. 2011.Variation in seedling freezing response is associated with climate in Larrea. Oecologia, 1 – 12
  • Mishra, A., Mishra, K. B., Höermiller, I. I., Heyer, A. G. & Nedbal, L. 2011. Chlorophyll fluorescence emission as a reporter on cold tolerance in Arabidopsis thaliana accessions.Plant Signaling & Behavior6, 301
  • Narayanan, N. N.et al.2011. Frontiers, The Iron Assimilatory Protein, FEA1, fromChlamydomonas reinhardtiifacilitates Iron–Specific metal uptake in yeast and plants.Frontiers in Plant Biotechnology2, DOI: 10.3389/fpls.2011.00067
  • Nejad, A. H. R., Harbinson, J. & van Meeteren, U.2011. An investigation on the possibility of use of chlorophyll fluorescence to study the stomatal behaviour in plants under drought stress. Archive of SID11(1), 35 – 41
  • Nishizawa–Yokoi, A.et al.2011. HsfA1d and HsfA1e involved in the transcriptional regulation of HsfA2 function as key regulators for the Hsf signaling network in response to environmental stress.Plant and cell physiology52, 933 – 945
  • Parlitz, S., Kunze, R., Mueller–Roeber, B. & Balazadeh, S. 2011.Regulation of photosynthesis and transcription factor expression by leaf shading and re–illumination inArabidopsis thalianaleaves.Journal of plant physiology168(12), 1311 – 1319
  • Pavlovič, A. 2011. Photosynthetic characterization of Australian pitcher plantCephalotus follicularis. Photosynthetica,49(2),253 – 258
  • Pavlovič, A., Slováková, L., Pandolfi, C. & Mancuso, S. 2011. On the mechanism underlying photosynthetic limitation upon trigger hair irritation in the carnivorous plant Venus flytrap (Ellis Music Day).Journal of experimental botany62, 1991 – 2000
  • Pavlovič, A., Slováková, Ľ. & Šantrůček, J. 2011. Nutritional benefit from leaf litter utilization in the pitcher plantNepenthes ampullaria. Plant, Cell & Environment34(11), 1865 – 1873
  • Peng, L. & Shikanai, T. 2011. Supercomplex formation with photosystem I is required for the stabilization of the chloroplast NADH dehydrogenase–like complex inArabidopsis. Plant physiology155, 1629 – 1639
  • Pineda, M., Olejnícková, J., Cséfalvay, L. & Barón, M. 2011. Tracking viral movement in plants by means of chlorophyll fluorescence imaging.Journal of plant physiology168(17), 2035 – 2040
  • Saini, G.et al.2011. ‘happy on norflurazon’(hon) mutations implicate perturbance of plastid homeostasis with activating stress acclimatization and changing nuclear gene expression in norflurazon‐treated seedlings.The Plant Journal65, 690 – 702
  • SIDDIQUA, M. & NASSUTH, A. 2011. Vitis CBF1 and Vitis CBF4 differ in their effect onArabidopsisabiotic stress tolerance, development and gene expression.Plant, Cell & Environment 34(8), 1345– 1359
  • Spacilova, V., SafrankovaI. 2011. Potential of Chlorophyll fluorescence and VIS/NIR spectroscopy measurement use for the detection of nitrogen content and disease infection of apples leaves. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis. 39, 317-327
  • Willig, A., Shapiguzov, A., Goldschmidt–Clermont, M. & Rochaix, J. D. 2011. The phosphorylation status of the chloroplast protein kinase stn7 ofarabidopsisaffects its turnover.Plant physiology157, 2102 – 2107
  • Yabuta, y.et al.2011. Involvement ofArabidopsisNAC transcription factor in the regulation of 20S and 26S proteasomes.Plant Science 181(4),421– 427
  • Yoshimura, K.et al.2011. Identification of alternative splicing events regulated by anArabidopsisserine/arginine–like protein, atSR4, in response to high–light stress using a tiling array.Plant and cell physiology52, 1786 – 1805
  • Bauriegel, E., Giebel, A. & Herppich, W. B.2011. Hyperspectral and chlorophyll fluorescence imaging to analyse the impact ofFusarium culmorumon the photosynthetic integrity of infected wheat ears.Sensors11, 3765 – 3779
  • Antunes, M. S.et al.2011. Programmable ligand detection system in plants through a synthetic signal transduction pathway.PLoS One 6(1),e16292.DOI:10.1371
  • Banasz, A. K., Łabuz, J., Sztatelman, O., Gabryś, H. & Fiedor, L.2011. Expression of Enzymes Involved in Chlorophyll Catabolism inArabidopsisIs Light Controlled.Plant physiology157, 1497 – 1504
  • Allen, M. D.2011. Biological links between cofactors, Metabolism, signaling and dynamic relationships between iron, manganese, and chlorophyll in the green algaChlamydomonas reinhardtii. Proquest, Umi Dissertation Publishing.
  • KviderováJ,et al. 2011. In situ response ofWe're all in commons.l. colonies to desiccation in Central Svalbard, Norwegian High Arctic. Fottea 11(1),87–97
  • Knaupp, M., Mishra, K. B., Nedbal, L. & Heyer, A. G. 2011. Evidence for a role of raffinose in stabilizing photosystem II during freeze–thaw cycles.Plant, 1 – 10
  • Kopsell, D. A.et al. 2011. Leaf tissue pigments and chlorophyll fluorescence parameters vary among sweet corn genotypes of differential herbicide sensitivity.Pesticide Biochemistry and Physiology99, 194 – 199
  • Kosmehl, T. 2010. Senescence–associated P4–type ATPases in the model plantArabidopsis thaliana
  • FilovaJ,et al. 2010. Use of the method of measurement of chlorophyll fluorescence to determine the phytotoxicity of mesotrione in poppy (Papaver somniferum) in relation to application factors. Acta Univ. Agric. Silvic. Mendelianae Brun 58, 107-116
  • ParkS J,et al. 2010. Response of Leaf Pigment and Chlorophyll Fluorescence to Light Quality in Soybean (Glycine maxMerr. var Seoritae). Korean J. Soil Sci. Fert. 43(3), 400-406
  • SErieM,et al.2010. Active sorting switch for biological objects. Proc. of SPIE 7762, DOI: 10.1117/12.859859
  • Zsom, T.et al.2010. Non–destructive determination of post–harvest ripening ofCapsicum annuum ‘Carp.’Horticulture Act858, 407 – 412
  • 武田圭一. 2010. Exploration of genes that are involved in the functional maintenance of the PhotosystemⅠinSynechocystissp. PCC6803.
  • Zheng Guohua, Pan Dongming, Niu Xianqian&Fang Shumin two thousand and ten The effect of ice nucleating bacteria on photosynthetic parameters and chlorophyll fluorescence parameters of loquat under low temperature stressChinese Journal of Ecological Agriculture 18 (6), 1251– 1255
  • Linke, M., Herppich, W. B. & Geyer, M. 2010. Green peduncles may indicate postharvest freshness of sweet cherries.Postharvest Biology and Technology58, 135 – 141
  • Maruta, T.et al.2010. Arabidopsis chloroplastic ascorbate peroxidase isoenzymes play a dual role in photoprotection and gene regulation under photooxidative stress.Plant and cell physiology51, 190 – 200
  • Pavlovič, A. 2010. Spatio–temporal changes of photosynthesis in carnivorous plants in response to prey capture, retention and digestion. PlantSignaling & Behavior5, 1325
  • Pavlovič, A., Demko, V. & Hudák, J. 2010. Trap closure and prey retention in Venus flytrap (Music Player) temporarily reduces photosynthesis and stimulates respiration.Annals of botany105, 37 – 44
  • Pavlovič, A., Singerová, L., Demko, V., Šantrůček, J. & Hudák, J. 2010. Root nutrient uptake enhances photosynthetic assimilation in prey–deprived carnivorous pitcher plantNepenthes talangensis. Photosynthetica48, 227 – 233
  • Prokopova, J.et al.2010. Changes in photosynthesis ofLycopersiconspp. plants induced by tomato powdery mildew infection in combination with heat shock pre–treatment.Physiological and Molecular Plant Pathology74, 205 – 213
  • Prokopova, J.et al.2010. Photosynthetic responses of lettuce to downy mildew infection and cytokinin treatment.Plant Physiology and Biochemistry48, 716 – 723
  • Sagardoy, R.et al.2010. Stomatal and mesophyll conductances to CO2are the main limitations to photosynthesis in sugar beet (Beta vulgaris) plants grown with excess zinc.New Phytologist187, 145 – 158
  • Sommer, F.et al.2010. The CRR1 nutritional copper sensor inChlamydomonascontains two distinct metal–responsive domains.The Plant Cell Online22, 4098 – 4113
  • Takahara, K.et al.2010. Metabolome and photochemical analysis of rice plants overexpressingArabidopsisNAD kinase gene.Plant physiology152, 1863 – 1873
  • Takami, T., Shibata, M., Kobayashi, Y. & Shikanai, T. 2010. De novo biosynthesis of fatty acids plays critical roles in the response of the photosynthetic machinery to low temperature inArabidopsis. Plant and cell physiology51, 1265 – 1275
  • Wingler, A., Purdy, S. J., Edwards, S. A., Chardon, F. & Masclaux‐Daubresse, C. 2010. QTL analysis for sugar‐regulated leaf senescence supports flowering‐dependent and‐independent senescence pathways.New Phytologist185, 420 – 433
  • Work, V. H.et al.2010. Increased lipid accumulation in theChlamydomonas reinhardtiista7–10 starchless isoamylase mutant and increased carbohydrate synthesis in complemented strains.Eukaryotic cell9, 1251 – 1261
  • Kocurek, V. & Sad, V.2010. Assessment of reduced doses efficacy of glyphosate by chlorophyll fluorescence measurement.
  • Kong, L.et al.2010. A root–zone soil regime of wheat, physiological and growth responses to furrow irrigation in raised bed planting in Northern China.Agronomy Journal102, 154 – 162
  • Kong, L.et al.2010. The structural and photosynthetic characteristics of the exposed peduncle of wheat (Tritical aestheticsL.), an important photosynthate source for grain–filling.BMC plant biology10, 141
  • Bauriegel, E., Giebel, A. & Herppich, W.2010. Rapidfusarium head blight detection on winter wheat ears using chlorophyll fluorescence imaging. Journal of applied botany and food quality 83, 196 – 203
  • Gabilly, S. T.et al. 2010. CCS5, a thioredoxin–like protein involved in the assembly of plastid c–type cytochromes.Journal of Biological Chemistry285, 29738 – 29749
  • Herppich W. B., et al. 2010. Chlorophyll fluorescence image analysis for non-destructive monitoring of physiological changes in fresh and fresh-cut produce. Proceedings of the international conference “environmentally friendly and safe technologies for quality of fruit and vegetables” edited by Carla Nunes. 45-51
  • Headquarters, S.W.et al.2010. Blue light dose–responses of leaf photosynthesis, morphology, and chemical composition ofCucumis sativusgrown under different combinations of red and blue light.Journal of experimental botany61, 3107 – 3117
  • Hull, J. A. 2010.Microstegium vimineumspread rate in relation to two different leaf litter disturbances and an evaluation of aboveground biomass accumulation and photosynthetic efficiency in response to four light treatments.University of Tennessee, Knoxville
  • Kusumi, K.et al.2010. Chloroplast biogenesis during the early stage of leaf development in rice.Plant Biotechnology27, 85 – 90
  • Cigler, P.et al. 2010. Interactions between iron and titanium metabolism in spinach, A chlorophyll fluorescence study in hydropony.Journal of plant physiology167, 1592 – 1597
  • Codrea, M. C.et al. 2010. Mahalanobis distance screening ofArabidopsismutants with chlorophyll fluorescence.Photosynthesis research105, 273 – 283
  • RASHID, M. D. H., ASAEDA, T. & UDDIN, M. D. N. 2010. Litter‐mediated allelopathic effects of kudzu (Pueraria montana) onBidens pilosaandLolium perenneand its persistence in soil.Weed Biology and Management10, 48 – 56
  • Demko, V., Pavlovic, A. & Hudák, J. 2010. Gabaculine alters plastid development and differentially affects abundance of plastid–encoded DPOR and nuclear–encoded GluTR and FLU–like proteins in spruce cotyledons.Journal of plant physiology167, 693 – 700
  • Esteban, R., Olascoaga, B., Becerril, J. M. & García‐Plazaola, J. I.2010. Insights into carotenoid dynamics in non‐foliar photosynthetic tissues of avocado.Physiologia Plantarum140, 69 – 78
  • Green L E,2009. Transient de-coupling of photosynthesis and stomatal conductance in response to leaf primary vein cut inHelianthus annuus. Science
  • Kummerová, M., Zezulka, Š. , Kráľová, K. & Masarovičová, E. 2010. Effect of zinc and cadmium on physiological and production characteristics inMatricaria recutita. Plant Biology54, 308 – 314
  • Kupper, H. 2009. Chromium–and copper–induced inhibition of photosynthesis inEuglena gracilisanalysed on the single–cell level by fluorescence kinetic microscopy.New Phytologist182(2), 405 – 420
  • Košvancová-Zitová, M.et al.2009. Blue radiation stimulates photosynthetic induction inFagus sylvaticaL.Photosynthetica47, 388 – 398
  • Küpper, H., Götz, B., Mijovilovich, A., Küpper, F. C. & Meyer–Klaucke, W. 2009.Complexation and toxicity of copper in higher plants. I. Characterization of copper accumulation, speciation, and toxicity inCrassula helmsiias a new copper accumulator.Plant physiology151, 702 – 714
  • Kim, C.et al.2009. 1O2–mediated retrograde signaling during late embryogenesis predetermines plastid differentiation in seedlings by recruiting abscisic acid.Proceedings of the National Academy of Sciences106, 9920
  • Laisk, A. & Nedbal, L. 2009. Photosynthesisin silico, Understanding complexity from molecules to ecosystems.Springer Publishing 29
  • Lee, K. P. 2009. The role of EXECUTER1–and EXECUTER2–dependent retrograde signaling after release of singlet oxygen inArabidopsis thaliana. Swiss federal institute of technology zurich. 104 (24), 10270 – 10275
  • Meskauskiene, R.et al.2009. A mutation in theArabidopsismTERF‐related plastid protein SOLDAT10 activates retrograde signaling and suppresses 1O2‐induced cell death.The Plant Journal60, 399 – 410
  • Mishra, A., Matouš, K., Mishra, K. B. & Nedbal, L. 2009. Towards discrimination of plant species by machine vision, advanced statistical analysis of chlorophyll fluorescence transients.Journal of fluorescence19, 905 – 913
  • Oh,M. H.et al.2009. Effects of Epiphytic Load on the Photosynthetic Performance of a Seagrass, Zostera marina, Monitored In Vivo by Chlorophyll Fluorescence Imaging.Journal of Plant Biology52, 171 – 175
  • Ozaki,H. & Sonoike, K. 2009. Quantitative analysis of the relationship between induction kinetics of chlorophyll fluorescence and function of genes in thecyanobacterium Synechocystissp. PCC 6803.Photosynthesis research101, 47 – 58
  • Pavlovič, A., Singerová, L., Demko, V. & Hudák, J. 2009. Feeding enhances photosynthetic efficiency in the carnivorous pitcher plantNepenthes talangensis. Annals of botany104, 307 – 314
  • Pavlovich, A.et al.2009. Chlorophyll biosynthesis and chloroplast development in etiolated seedlings ofGinkgo bilobaL.Photosynthetica47, 510 – 516
  • Rocchetta, I. & Küpper, H. 2009. Chromium‐and copper‐induced inhibition of photosynthesis inEuglena gracilisanalysed on the single‐cell level by fluorescence kinetic microscopy.New Phytologist182, 405 – 420
  • Schlüter, O., Foerster, J., Geyer, M., Knorr, D. & Herppich, W. B. 2009.Characterization of high–hydrostatic–pressure effects on fresh produce using chlorophyll fluorescence image analysis.Food and Bioprocess Technology2, 291 – 299
  • Steiner, S.et al.2009. The role of phosphorylation in redox regulation of photosynthesis genes psaA and psbA during photosynthetic acclimation of mustard.Molecular plant2, 416 – 429
  • Stettler, M.et al.2009. Blocking the metabolism of starch breakdown products inArabidopsisleaves triggers chloroplast degradation.Molecular plant2, 1233 – 1246
  • Takabayashi, A.et al.2009. Three novel subunits ofArabidopsischloroplastic NAD (P) H dehydrogenase identified by bioinformatic and reverse genetic approaches.The Plant Journal57, 207 – 219
  • Váňová, L., Kummerová, M., Klemš, M. & Zezulka, Š. 2009. Fluoranthene influences endogenous abscisic acid level and primary photosynthetic processes in pea (Pisum sativumL.) plants in vitro.Plant Growth Regulation57, 39 – 47
  • Yamamoto, Y.et al.2009. Identification of photosynthetic sacoglossans from Japan.Endocytobiosis Cell Res19, 112 – 119
  • Yoo, S.et al.2009. Photosynthetic Activities of Bio-indicator Plants from Soil Contaminated Regionnear Mine Dump.The 9thInternational Conference of The East and Southeast Asia Federation of Soil Science Societies, five hundred and thirty-two – 533
  • Yoshida, K. & Noguchi, K. 2009. Differential gene expression profiles of the mitochondrial respiratory components in illuminatedArabidopsis leaves.Plant and cell physiology50, 1449 – 1462
  • Gołębiowska, G. & Wędzony, M.2009. Cold–hardening of winter triticale (x Triticosecale Wittm.) results in increased resistance to pink snow mouldMicrodochium level(Fr., Samuels & Hallett) and genotype–dependent chlorophyll fluorescence modulations.Plant Physics Act31, 1219 – 1227
  • Hájek, J., Váczi, P. & Barták, M.2009. Photosynthetic electron transport at low temperatures in the green algal foliose lichensLasallia pustulataandUmbilicaria hirsutaaffected by manipulated levels of ribitol.Photosynthetica47, 199 – 205
  • Hájek, T. & Adamec, L.2009. Mineral nutrient economy in competing species ofSphagnummosses.Ecological research24, 291 – 302
  • Hájek, T., Tuittila, E. S., Ilomets, M. & Laiho, R.2009. Light responses of mire mosses–a key to survival after water‐level drawdown?Oikos118, 240 – 250
  • Hankamer, B. returning; Kruse, or. 2009.EP Patent1,641,712
  • Hein, P., Stöckel, J., Bennewitz, S. & Oelmüller, R. 2009.A protein related to prokaryotic UMP kinases is involved in psaA/B transcript accumulation inArabidopsis. Plant molecular biology 69, 517 – 528
  • Higuchi, M., Ozaki, H., Matsui, M. & Sonoike, K. 2009. A T–DNA insertion mutant of AtHMA1 gene encoding a Cu transporting ATPase inArabidopsis thalianahas a defect in the water–water cycle of photosynthesis.Journal of Photochemistry and PhotobiologyB, Biology 94, 205 – 213
  • Johnson, X.et al.2009. A new setup for in vivo fluorescence imaging of photosynthetic activity.Photosynthesis research102, 85 – 93
  • Kasajima, I., Takahara, K., Kawai–Yamada, M. & Uchimiya, H. 2009. Estimation of the relative sizes of rate constants for chlorophyll de–excitation processes through comparison of inverse fluorescence intensities.Plant and cell physiology50, 1600 – 1616
  • Cohu, C. M.et al. 2009 Copper delivery by the copper chaperone for chloroplast and cytosolic copper/zinc–superoxide dismutases, regulation and unexpected phenotypes in anArabidopsismutant. Molecular plant 2, 1336 – 1350
  • Coll, N. S., Danon, A., Meurer, J., Cho, W. K. & Apel, K. 2009. Characterization of soldat8, a suppressor of singlet oxygen–induced cell death inArabidopsisseedlings. Plant and cell physiology50, 707 – 718
  • Cournac, L. Interactions between photosynthetic, (chloro) respiratory and hydrogen oxidoreduction pathways in algae and cyanobacteria.
  • Chief, L.et al.2009. Pre–symptomatic detection ofPlasmopara viticolainfection in grapevine leaves using chlorophyll fluorescence imaging.European journal of plant pathology125, 291 – 302
  • Benedikty, Z. & Nedbal, L.2009. Imaging of multi–color fluorescence emission from leaf tissues.Photosynthesis research102, 169 – 175
  • Baruah, A., Šimková, K., Apel, K. & Laloi, C.2009. Arabidopsismutants reveal multiple singlet oxygen signaling pathways involved in stress response and development.Plant molecular biology70, 547 – 563
  • Baruah, A., Šimková, K., Hincha, D. K., Apel, K. & Laloi, C.2009. Modulation of 1O2‐mediated retrograde signaling by the pleiotropic response locus 1 (PRL1) protein, a central integrator of stress and energy signaling.The Plant Journal60, 22 – 32
  • Chi, W.et al. 2008. The pentratricopeptide repeat protein DELAYED GREENING1 is involved in the regulation of early chloroplast development and chloroplast gene expression inArabidopsis. Plant physiology147, 573 – 584
  • Hankamer, B. returning; Kruse, or2008. Google Patents 7371560
  • Higuchi, M.et al.2008. Identification of Photosynthesis–Related Genes in Rice Using FOX Hunting System.Photosynthesis. Energy from the Sun, five hundred and ninety-seven – 600
  • Gechev, T. S.et al. 2008. ArabidopsisAAL–toxin–resistant mutant atr1 shows enhanced tolerance to programmed cell death induced by reactive oxygen species.Biochemical and biophysical research communications375, 639 – 644
  • Hacker, J., Spindelböck, J. P. & Neuner, G.2008. Mesophyll freezing and effects of freeze dehydration visualized by simultaneous measurement of IDTA and differential imaging chlorophyll fluorescence.Plant, Cell & Environment31, 1725 – 1733
  • Horgan, D. & Zabkiewicz, J. 2008. Fluorescence decline ratio, Comparison with quantum yield ratio for plant physiological status and herbicide treatment responses.New Zealand Plant Protection61, 169 – 173
  • Jančula, D., Míkovcová, M., Adamek, Z. & Marshálek, B. 2008. Changes in the photosynthetic activity ofMicrocystiscolonies after gut passage through Nile tilapia (Oreochromis niloticus) and silver carp (Hypophthalmichthys molitrix).Aquaculture Research39, 311 – 314
  • Jeong, J.et al.2008. Chloroplast Fe (III) chelate reductase activity is essential for seedling viability under iron limiting conditions.Proceedings of the National Academy of Sciences105, 10619
  • Kühl, M. & Polerecky, L. 2008.Functional and structural imaging of phototrophic microbial communities and symbioses.Aquatic MicrobialEcology 53, 99 – 118
  • Oh,M. H.et al.2008. Leaf Senescence in a Stay–Green Rice Variety, SNU–SG and a Mutant, sgr. Photosynthesis.Energy from the Sun, one thousand five hundred and fifteen – 1518
  • Peter, S. Soudek, P., Benešová, D. & Vaněk, T. 2008. Uptake and distribution of uranium in Armoracia rusticana.COST Action859, 21
  • Pineda, M., Soukupová, J., Matouš, K., Nedbal, L. & Barón, M. 2008. Conventional and combinatorial chlorophyll fluorescence imaging of tobamovirus–infected plants.Photosynthetica46, 441 – 451
  • Raptor, M.et al.2008. Photosynthetic acclimation to cold as a potential physiological marker of winter barley freezing tolerance assessed under variable winter environment.Journal of Agronomy and Crop Science194, 61 – 71
  • Rodríguez-Moreno, L.et al.2008. Chlorophyll Fluorescence Imaging for Detection of Bean Response toPseudomonas syringaeinasymptomaticleafaErr. 37 – 44
  • Rodríguez-Moreno, L.et al.2008. Early detection of bean infection byPseudomonas syringaein asymptomatic leaf areas using chlorophyll fluorescence imaging.Photosynthesis research 96(1), twenty-seven – 35
  • Roháček, K., Soukupová, J., Barták, M. & Schoefs, B. 2008. Chlorophyll fluorescence, a wonderful tool to study plant physiology and plant stress.Research Signpost, India, 41 – 104
  • Roose, J. L. 2008. Assembly and function of cyanobacterial photosystem II.ProQuest
  • Schliebner, I.2008. Identification and characterization of chloroplastic protein kinases with a focus on PPPK10. Ludwig-Maximilians University of Munich
  • Schlüter, O.et al. 2008. Stress response of physiological active food products on high hydrostatic pressures up to 250 MPa.
  • Soudek, P., Petrová, Š. , Buzek, M., Lhotský, O. & Vaněk, T. 2008. Phytotoxicity of uranium and thorium in comparison with other heavy metals for selected higher plants.Cost action859, 65
  • Whole, J.et al.2008. Annual variation of the steady–state chlorophyll fluorescence emission of evergreen plants in temperate zone.Functional Plant Biology35, 63 – 76
  • Wagner, R., Dietzel, L., Bräutigam, K., Fischer, W. & Pfannschmidt, T. 2008.The long–term response to fluctuating light quality is an important and distinct light acclimation mechanism that supports survival ofArabidopsis thalianaunder low light conditions.Plant228, 573 – 587
  • Yabuta, y.et al.2008. Conversion of L–galactono–1, 4–lactone to L–ascorbate is regulated by the photosynthetic electron transport chain inArabidopsis. Bioscience, biotechnology, and biochemistry,72(10),2598 – 2607
  • Yamamoto, H. & Miyake, C. 2008. Overexpression of ferredoxin in tobacco chloroplasts stimulates cyclic electron flow around photosystem I (CEF–PSI) and enhances non–photochemical quenching (NPQ) of Chl fluorescence.Photosynthesis.Energy from the Sun, 951 – 954
  • Yoshida, K., Watanabe, C., Kato, Y., Sakamoto, W. & Noguchi, K. 2008. Influence of chloroplastic photo–oxidative stress on mitochondrial alternative oxidase capacity and respiratory properties, a case study withArabidopsisyellow variegated 2.Plant and cell physiology49, 592 – 603
  • Elster, J.et al. 2008. Freezing and desiccation injury resistance in the filamentous green algaKlebsormidiumfrom the Antarctic, Arctic and Slovakia.Biology63, 843 – 851
  • Elster, J., Lukavsky, J., Harding, K., Benson, E. E. & Day, J. G.2008. Deployment of the encapsulation/dehydration protocol to cryopreserve polar microalgae held at the Czech Republic Academy of Sciences Institute of Botany.CryoLetters29, 27 – 28
  • Esteban, R., Fernández–Marín, B., Becerril, J. M. & García–Plazaola, J. I.2008. Photoprotective implications of leaf variegation inE. dens–canisL. andP. officinalisL.Journal of plant physiology165, 1255 – 1263
  • LenkS,et al. 2007. Multispectral fluorescence and reflectance imaging at the leaf level and its possible applications. Journal of Experimental Botany 58(4), 807–814,
  • Allen, M. D., Kropat, J., Tottey, S., Del Campo, J. A. & Merchant, S. S.2007. Manganese deficiency in Chlamydomonas results in loss of photosystem II and MnSOD function, sensitivity to peroxides, and secondary phosphorus and iron deficiency.Plant physiology143, 263 – 277
  • Barták, M., Váczi, P., Hájek, J. & Smykla, J.2007. Low–temperature limitation of primary photosynthetic processes in Antarctic lichensUmbilicaria antarcticaandXanthoria elegans. Polar Biology31, 47 – 51
  • Berger, S.et al. 2007. Visualization of dynamics of plant–pathogen interaction by novel combination of chlorophyll fluorescence imaging and statistical analysis, differential effects of virulent and avirulent strains ofP. syringesand of oxylipins on A.thaliana. Journal of experimental botany58, 797 – 806
  • HorizontalD,et al. 2007. Chloroplast iron-sulfur cluster protein maturation requires the essential cysteine desulfurase CpNifS. PNAS 104(13),5686–5691
  • Hogewoning, S. W. & Harbinson, J. 2007. Insights on the development, kinetics, and variation of photoinhibition using chlorophyll fluorescence imaging of a chilled, variegated leaf.Journal of experimental botany58, 453 – 463
  • Kalituho, L., Rech, J. & Jahns, P. 2007.The roles of specific xanthophylls in light utilization.Plant225, 423 – 439
  • Küpper, H., Parameswaran, A., Leitenmaier, B., Trtilek, M. & Šetlík, I. 2007.Cadmium‐induced inhibition of photosynthesis and long‐term acclimation to cadmium stress in the hyperaccumulatorThlaspi caerulescens. New Phytologist175, 655 – 674
  • Lenk, S.et al.2007. Multispectral fluorescence and reflectance imaging at the leaf level and its possible applications.Journal of experimental botany58, 807 – 814
  • Lichtenthaler, H. K., Ac, A., Marek, M. V., Kalina, J. & Urban, O. 2007.Differences in pigment composition, photosynthetic rates and chlorophyll fluorescence images of sun and shade leaves of four tree species.Plant Physiology and Biochemistry45, 577 – 588
  • López–Juez, E., Bowyer, J. R. & Sakai, T. 2007. Distinct leaf developmental and gene expression responses to light quantity depend on blue–photoreceptor or plastid–derived signals, and can occur in the absence of phototropins.Plant227, 113 – 123
  • Mahler, H.et al.2007. Singlet oxygen affects the activity of the thylakoid ATP synthase and has a strong impact on its γ subunit.Plant225, 1073 – 1083
  • Masclaux–Daubresse, C.et al. 2007. Genetic variation suggests interaction between cold acclimation and metabolic regulation of leaf senescence.Plant physiology143, 434 – 446
  • Miura, E.et al.2007. The balance between protein synthesis and degradation in chloroplasts determines leaf variegation inArabidopsisyellow variegated mutants.The Plant Cell Online19, 1313 – 1328
  • Hiroshi Ozaki, Masahiko Ikeuchi, Teruo Ogawa, Hideya Fukuzawa and Kintake Sonoike. 2007. Large–scale analysis of chlorophyll fluorescence kinetics inSynechocystissp. PCC 6803, identification of the factors involved in the modulation of photosystem stoichiometry.Plant and cell physiology48, 451 – 458
  • Rejmánková, E. & Sirova, D. 2007. Wetland macrophyte decomposition under different nutrient conditions, Relationships between decomposition rate, enzyme activities and microbial biomass.Soil Biology and Biochemistry39, 526 – 538
  • Sjödin, A. 2007. Populus transcriptomics, from noise to biology.Department of Plant Physiology, Umeå University
  • Solymosi, K., Vitányi, B., Hideg, É. & Böddi, B. 2007. Etiolation symptoms in sunflower (Helianthus annuus) cotyledons partially covered by the pericarp of the achene.Annals of botany99, 857 – 867
  • Sun, X. W., Wang, L. Y. & Zhang, L. X. 2007.Involvement of DEG5 and DEG8 proteases in the turnover of the photosystem II reaction center D1 protein under heat stress inArabidopsis thaliana. Chinese Science Bulletin52, 1742 – 1745
  • Vácha, F.et al. 2007. Identification of Photosystem I and Photosystem II enriched regions of thylakoid membrane by optical microimaging of cryo–fluorescence emission spectra and of variable fluorescence.Micron38, 170 – 175
  • Zsom, T.2007. Change in the quality of eating pepper during the period after taking,Corvinus University of Budapest

661. Bonardi, V.2006. Molecular–genetic characterization of thylakoid protein hosphorylation inArabidopsis thaliana. University Library

  • Flexas, J.et al. 2006. Decreased Rubisco activity during water stress is not induced by decreased relative water content but related to conditions of low stomatal conductance and chloroplast CO2concentration.New Phytologist172, 73 – 82
  • Gachon, C. M. M., Küpper, H., Küpper, F. C. & Šetlík, I.2006. Single–cell chlorophyll fluorescence kinetic microscopy ofPylaiella littoralis(Phaeophyceae) infected byChytridium polysiphonia(Chytridiomycota).European Journal of Phycology41, 395 – 403
  • Hájek, J., Barták, M. & Dubová, J.2006. Inhibition of photosynthetic processes in foliose lichens induced by temperature and osmotic stress.Plant Biology50, 624 – 634
  • Kalituho, L., Graßes, T., Graf, M., Rech, J. & Jahns, P. 2006.Characterization of a nonphotochemical quenching–deficientArabidopsismutant possessing an intact PsbS protein, xanthophyll cycle and lumen acidification.Plant223, 532 – 541
  • Lazár, D., Sušila, P. & Nauš, J. 2006. Early detection of plant stress from changes in distributions of chlorophyll a fluorescence parameters measured with fluorescence imaging.Journal of fluorescence16, 173 – 176
  • Ma, J. F., Guo, J. K., Peng, L. W., Chen, C. Y. & Zhang, L. X. 2006.Decrease of photosystem ii photochemistry inArabidopsisppt1 mutant is dependent on leaf age.Journal of integrative plant biology48, 1409 – 1414
  • Matouš, K., Benedikty, Z., Berger, S., Roitsch, T. & Nedbal, L. 2006.Case study of combinatorial imaging, What protocol and what chlorophyll fluorescence image to use when visualizing infection ofArabidopsis thalianaby Pseudomonas syringae?Photosynthesis research90, 243 – 253
  • Nejad, A. R., Harbinson, J. & Van Meeteren, U. 2006. Dynamics of spatial heterogeneity of stomatal closure inTradescantia virginianaaltered by growth at high relative air humidity.Journal of experimental botany57, 3669 – 3678
  • Pfalz, J., Liere, K., Kandlbinder, A., Dietz, K. J. & Oelmüller, R. 2006. pTAC2,–6, and–12 are components of the transcriptionally active plastid chromosome that are required for plastid gene expression.The Plant Cell Online18, 176 – 197
  • Pourtau, N., Jennings, R., Pelzer, E., Pallas, J. & Wingler, 2006. A. Effect of sugar–induced senescence on gene expression and implications for the regulation of senescence in Arabidopsis.Plant224, 556 – 568
  • Škaloudová, B., Křivan, V. & Zemek, R. 2006. Computer–assisted estimation of leaf damage caused by spider mites.Computers and electronics in agriculture53, 81 – 91
  • Titiz, or...et al.2006. PDX1 is essential for vitamin B6 biosynthesis, development and stress tolerance inArabidopsis. The Plant Journal48, 933 – 946
  • Frog, M., Drastichová, K., Jegorov, A.,2006. Soukupová, J. & Nedbal, L. Direct evidence of plant–pathogenic activity of fungal metabolites ofTrichothecium roseumon apple.Mycopathologia162, 65 – 68
  • SkaloudovaB,et al. 2006. Computer-assisted estimation of leaf damage caused by spider mites. Computers and Electronics in Agriculture 53,81–91
  • Antunes, M. S.et al. 2006. A synthetic de‐greening gene circuit provides a reporting system that is remotely detectable and has a re‐set capacity.Plant biotechnology journal4, 605 – 622
  • Coll, N. S. 2006. Identification and characterization of soldat8, a suppressor of the cell death program activated by singlet oxygen inArabidopsisseedlings.Swiss federal institute of technology zurich.Diss. ETH No. 16511
  • Aldea, M., Frank, T. D. & DeLucia. 2006.E. H. A method for quantitative analysis of spatially variable physiological processes across leaf surfaces.Photosynthesis research90, 161 – 172
  • Bartak, M., Solhaug, K. A., Vráblíková, H. & Gauslaa, Y.2006. Curling during desiccation protects the foliose lichen Lobaria pulmonaria against photoinhibition. Oecologia 149, 553 – 560
  • Christ, M. M.2005. Temporal and Spatial Patterns of Growth and Photosynthesis in Leaves of Dicotyledonous Plants Under Long–Term CO2–and O3–Exposure,University and State Library Düsseldorf
  • Diaz, C.et al.2005. Characterization of markers to determine the extent and variability of leaf senescence inArabidopsis. A metabolic profiling approach.Plant physiology138, 898 – 908
  • Fey, V.2005. Mediation of photosynthetic redox signals in the regulation of plant gene expression. Thuringian University and State Library
  • Förster, B., Osmond, C. B. & Pogson, B. J.2005. Improved survival of very high light and oxidative stress is conferred by spontaneous gain–of–function mutations inChlamydomonas. Biochimica et Biophysica Acta (BBA)–Bioenergetics1709, 45 – 57
  • Fujimori, T.et al. 2005. The mutant of sll1961, which encodes a putative transcriptional regulator, has a defect in regulation of photosystem stoichiometry in thecyanobacterium Synechocystissp. PCC 6803. Plant physiology139, 408 – 416
  • Kropat, J.et al.2005. A regulator of nutritional copper signaling inChlamydomonasis an SBP domain protein that recognizes the GTAC core of copper response element.Proceedings of the National Academy of Sciences of the United States of America102, 18730
  • Obenland, D. & Neipp, P. 2005. Chlorophyll fluorescence imaging allows early detection and localization of lemon rind injury following hot water treatment.HortScience40, 1821 – 1823
  • Pérez, C. S. 2005. Viral infections as a stress factor in photosynthesis.
  • Šetlíková, E., Šetlík, I., Küpper, H., Kasalický, V. & Prášil, O. 2005. The photosynthesis of individual algal cells during the cell cycle ofScenedesmus quadricaudastudied by chlorophyll fluorescence kinetic microscopy.Photosynthesis research84, 113 – 120
  • Thornton, L. E., Keren, N., Ohad, I. & Pakrasi, H. B. 2005.Physcomitrella patens and Ceratodon purpureus, mosses as model organisms in photosynthesis studies.Photosynthesis research83, 87 – 96
  • Wingler, A., Brownhill, E. & Pourtau, N. 2005. Mechanisms of the light–dependent induction of cell death in tobacco plants with delayed senescence.Journal of experimental botany56, 2897 – 2905
  • Baerr, J. N., Thomas, J. D., Taylor, B. G., Rodermel, S. R. & Gray, G. R.2005. Differential photosynthetic compensatory mechanisms exist in the immutans mutant ofArabidopsis thaliana. Physiologia Plantarum124, 390 – 402
  • Adamec, F., Kaftan, D. & Nedbal, L.2005. Stress-Induced filament fragmentation ofcalothrix list(cyanobacteria) is facilitated by death of high‐fluorescence cells1. Journal of phycology41, 835 – 839
  • Bartak, M., Gloser, J. & Hajek, J.2005. Visualized photosynthetic characteristics of the lichen Xanthoria elegans related to daily courses of light, temperature and hydration, a field study from Galindez Island, maritime Antarctica.Lichenologist.37, 433 – 444
  • Eliašová, A., Repcák, M. & Pastírová, A.2004. Quantitative changes of secondary metabolites ofMatricaria chamomillaby abiotic stress.Z Naturforsch59c, 543 – 548
  • Eriksson, M.et al. 2004. Genetic dissection of nutritional copper signaling in Chlamydomonas distinguishes regulatory and target genes.Genetics168, 795 – 807
  • Gavel, A. & Marshall, B.2004. A novel approach for phytotoxicity assessment by CCD fluorescence imaging.Environmental toxicology19, 429 – 432
  • Gavel, A., Marsalek, B. & Adamek, Z.2004. Viability of Microcystis colonies is not damaged by silver carp (Hypophthalmichthys molitrix) digestion.Algological Studies113, 189 – 194
  • Kanya, R.et al.2004. Effect of herbicide clomazone on photosynthetic processes in primary barley (Filled HordeumL.) leaves.Pesticide Biochemistry and Physiology78, 161 – 170
  • Kasinathan, V. & Wingler, A. 2004. Effect of reduced arginine decarboxylase activity on salt tolerance and on polyamine formation during salt stress inArabidopsis thaliana. Physiologia Plantarum121, 101 – 107
  • Küpper, H., Ferimazova, N., Setlík, I. & Berman–Frank, I. 2004. Traffic lights inTrichodesmium.Regulation of photosynthesis for nitrogen fixation studied by chlorophyll fluorescence kinetic microscopy.Plant physiology135, 2120 – 2133
  • Lezhneva, L., Amann, K. & Meurer, J. 2004.The universally conserved HCF101 protein is involved in assembly of [4Fe‐4S]‐cluster‐containing complexes inArabidopsis thaliana chloroplasts. The Plant Journal37, 174 – 185
  • Lezhneva, L., et al. 2004. The nuclear factor HCF145 affects chloroplast psaA-psaB-rps14 transcript abundance inArabidopsis thaliana. The Plant Journal38, 740-753
  • Nedbal, L. & Whitmarsh, J. 2004. Chlorophyll fluorescence imaging of leaves and fruits. Chlorophyll a fluorescence, a signature of photosynthesis.Dordrecht, The Netherlands, Springer,389 – 407
  • Page,M. L. D.et al. 2004. A homolog of prokaryotic thiol disulfide transporter CcdA is required for the assembly of the cytochrome b6f complex inArabidopsischloroplasts.Journal of Biological Chemistry279, 32474 – 32482
  • Pourtau, N.et al.2004. Interactions of abscisic acid and sugar signalling in the regulation of leaf senescence.Plant219, 765 – 772
  • Roose, J. L. & Pakrasi, H. B. 2004. Evidence that D1 processing is required for manganese binding and extrinsic protein assembly into photosystem II.Journal of Biological Chemistry279, 45417 – 45422
  • Schönfeld, C.et al.2004. The nucleus–encoded protein MOC1 is essential for mitochondrial light acclimation inChlamydomonas reinhardtii. Journal of Biological Chemistry279, 50366 – 50374
  • Walter, A., Rascher, U. & Osmond, B. 2004.Transitions in photosynthetic parameters of midvein and interveinal regions of leaves and their importance during leaf growth and development.Plant Biology6, 184 – 191
  • Wingler, A., Marès, M. & Pourtau, N. 2004. Spatial patterns and metabolic regulation of photosynthetic parameters during leaf senescence.New Phytologist161, 781 – 789
  • Barták, M., Hájek, J., Vráblíková, H. & Dubová, J.2004. High‐Light Stress and Photoprotection inUmbilicaria antarcticaMonitored by Chlorophyll Fluorescence Imaging and Changes in Zeaxanthin and Glutathione.Plant Biology6, 333 – 341
  • Bosco, C. D.et al. 2004. Inactivation of the chloroplast ATP synthase γ subunit results in high non–photochemical fluorescence quenching and altered nuclear gene expression inArabidopsis thaliana. Journal of Biological Chemistry279, 1060
  • Halperin, Stephen J. Brezina, V. & Nedbal, L.2003. Harmonic irradiance forces complex oscillations of fluorescent emission of chlorophyll. American society of plant biologist
  • Chaerle, L.et al. 2003. Robotized time‐lapse imaging to assess in‐planta uptake of phenylurea herbicides and their microbial degradation.Physiologia Plantarum118, 613 – 619
  • Chaerle, L.et al. 2003. Imaging techniques in plant physiology and agronomy, from simple to multi-spectral approaches. Plant Physiology and Plant Molecular Biology in the New Millennium,135-155
  • Gray, G. R., Hope, B. J., Qin, X., Taylor, B. G. & Whitehead, C. L.2003. The characterization of photoinhibition and recovery during cold acclimation inArabidopsis thalianausing chlorophyll fluorescence imaging.Physiologia Plantarum119, 365 – 375
  • Hamel, P. P., Dreyfuss, B. W., Xie, Z., Gabilly, S. T. & Merchant, S.2003. Essential histidine and tryptophan residues in CcsA, a system II polytopic cytochrome c biogenesis protein.Journal of Biological Chemistry278, 2593 – 2603
  • Hunt, S. 2003. Measurements of photosynthesis and respiration in plants.Physiologia Plantarum117, 314 – 325
  • Kouřil, R., Lazar, D., Lee, H., Jo, J. & Nauš, J. 2003. Moderately elevated temperature eliminates resistance of rice plants with enhanced expression of glutathione reductase to intensive photooxidative stress.Photosynthetica41, 571 – 578
  • Sommer, F., Hippler, M., Biehler, K., Fischer, N. & ROCHAIX, J. D. 2003.Comparative analysis of photosensitivity in photosystem I donor and acceptor side mutants ofChlamydomonas reinhardtii. Plant, Cell & Environment26, 1881 – 1892
  • Soukupova, J., Smatanova, S., Nedbal, L. & Jegorov, A. 2003. Plant response to destruxins visualized by imaging of chlorophyll fluorescence.Physiologia Plantarum118, 399 – 405
  • Wulf, J., Mulugeta, E. & Zude, M. 2003.Laser–Induced Fluorescence Spectroscopy (LIFS), Influencing Factors on Measurements.ASAE Paper
  • Ferimazova, N., Küpper, H., Nedbal, L. & Trtílek, M.2002. Newinsights intophotosyntheticoscillationsrevealed bytwo‐dimensionalmicroscopicmeasurements ofchlorophyllfluorescencekinetics inintactleaves andisolatedprotoplasts. Photochemistry and photobiology76, 501 –5 08
  • Kim, J. H., Jung, J. E. & Lee, C. H. 2002.In vivo monitoring of the incorporation of chemicals into cucumber and rice leaves by chlorophyll fluorescence imaging.Plant Biotech4, 171 – 178
  • Moseley, J. L.et al.2002. Adaptation to Fe–deficiency requires remodeling of the photosynthetic apparatus.The EMBO journal21, 6709 – 6720
  • Nedbal, L. & Brezina, V. 2002. Complex metabolic oscillations in plants forced by harmonic irradiance.Biophysical journal83, 2180 – 2189
  • Zude, M., Herppich, W. B., Dou, H. & Miller, W. M. 2002.Amercian Society of Agricultural and Biological Engineers.
  • HermansC,et al.2001. Biosensing methods to assess environmental stress encountered by sugar beet (Beta vulgaris L.). Proceedings of the 64 IIRB Congress
  • Küpper, H., Šetlík, I., Trtílek, M. & Nedbal, L. 2001. A microscope for two–dimensional measurements of in vivo chlorophyll fluorescence kinetics using pulsed measuring radiation, continuous actinic radiation, and saturating flashes.Photosynthetica38, 553 – 570
  • Nedbal, L., Soukupová, J., Whitmarsh, J. & Trtílek, M. 2001. Postharvest imaging of chlorophyll fluorescence from lemons can be used to predict fruit quality.Photosynthetica38, 571 – 579
  • Soukupova, J.et al.2001. Early detection of biotic and abiotic stress by kinetic imaging of chlorophyll fluorescence.Science Access S36–004
  • Kupper, H., Setlik, I., Trtilek, M. & Nedbal, L. 2000. A microscope for two–dimensional measurements of in vivo chlorophyll fluorescence kinetics using pulsed measuring radiation, continuous actinic radiation, and saturating flashes.Photosynthetica38, 553 – 570
  • Bartak, M., Hájek, J. & Gloser, J.2000. Heterogeneity of chlorophyll fluorescence over thalli of several foliose macrolichens exposed to adverse environmental factors, Interspecific differences as related to thallus hydration and high irradiance.Photosynthetica38(4), five hundred and thirty-one – 537
  • Nedbal L, et al. 2000. Postharvest imaging of chlorophyll fluorescence from lemons can be used to predict fruit quality. Photosynthetica38(4), 481-482
  • Nedbal L, et al. 2000. 3rd Regional Photosynthesis Workshop-The Chlorophyll Fluorescence Imaging and its Application in Plant Science and Technology-Seeing is beliving. Photosynthetica38(4), 571-579
  • Nedbal, L., Soukupová, J., Kaftan, D., Whitmarsh, J. & Trtílek, M. 2000. Kinetic imaging of chlorophyll fluorescence using modulated light.Photosynthesis research66, 3 – 12
  • HeckD A,et al. 1999. Characterization of Two Photosynthetic Mutants of Maize. Plant Physiology 120, 1129–1136
  • Aiba, H.et al. 1998. Analysis of acyanobacterium Synechocystissp. PCC 6803 genome by application of chlorophyll fluorescence video–imaging system.Science Access 3