Literature List of FluorCam Chlorophyll Fluorescence Imaging Technology for Algae Research
- 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 of Chlamydomonas. PNAS 116 (6): 2374-2383
- 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 of Chlamydomonas reinhardtii entrapped in lens-shaped silica hydrogels. Journal of Biotechnology 302:58-66
- 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
- HomburgSV,et al. 2019. Entrapment and growth of Chlamydomonas reinhardtii in biocompatible silica hydrogels. Colloids Surf B Biointerfaces 173: 233-241
- 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
- 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
- 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
- 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
- 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
- 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
- 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
- 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
- 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
- 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
- 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
- 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/ijms19010155
- 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
- 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
- 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
- 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
- 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
- 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
- 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
- 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
- ZhurekR,et al. 2017. Toxicity evaluation of spent drilling mud and drilling waste. AGH Drilling, Oil, Gas 34(1), 243-258
- 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
- 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
- AllorentG,et al. 2016. UV-B photoreceptor-mediated protection of the photosynthetic machinery inChlamydomonas reinhardtii. PNAs 113 (51),14864-14869
- ShapiguzovA,et al. 2016. Activation of the Stt7/STN7 Kinase through Dynamic Interactions with the Cytochrome b6f Complex. Plant Physiology 171, 82-92
- TibetanT, et al. 2016. Chlamydomonas reinhardtiiPsbS protein is functional and accumulates rapidly and transiently under high light. Plant Physiology
- RabbitI,et al. 2016. Response of lichensCladonia shrubsubsp.mitisandCladonia furcatato nitrogen excess. Biology 71(6),632-638
- 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
- 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
- BerteottiS,et al. 2016. Increased biomass productivity in green algae by tuning non-photochemical quenching. Scientific Reports 6,21339
- LauersenK J,et al. 2016. Efficient phototrophic production of a high-value sesquiterpenoid from the eukaryotic microalgaChlamydomonas reinhardtii. Metabolic Engineering
- 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
- 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
- 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
- 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
- EilersU,et al. 2016. Identification of genes coding for functional zeaxanthin epoxidases in the diatomPhaeodactylum tricornutum. Journal of Plant Physiology 192(15),64-70
- 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)
- 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
- MalesM,et al. 2015. Preliminary investigation of combined laser and microwave treatment for stone biodeterioration. Studies in Conservation 60:sup1,19-27
- 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
- ScibiliaL,et al. 2015. Photosynthetic response to nitrogen starvation and high light inHaematococcus pluvialis. Algal Research 12, 170-181
- 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
- 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
- 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
- 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
- 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
- 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
- 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
- PetrzikK,et al. 2015. Platinum Anniversary, Virus and Lichen Alga Together More than 70 Years. PLOS ONE,DOI: 10.1371/journal.pone.0120768
- 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
- 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
- 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
- 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
- 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
- SchmollingerS,et al. 2014. Nitrogen-Sparing Mechanisms inChlamydomonasAffect the Transcriptome, the Proteome, and Photosynthetic Metabolism. The Plant Cell 26(4),1410-1435
- GuptaE,et al. 2014. Evolutionary legacy response observed in algae and bryophytes following hydrogen sulfide administration. Toxicological & Environmental Chemistry 96(3), 442-450
- TrnkováK,et al. 2014. Changes in spectral properties and chlorophyll fluorescence ofWe're all in commoncolonies from Svalbard during dehydration and supplemental UV-B stress. In Jan Kavan, Alexandra Bernardová. Polar Ecology Conference 2014. České Budějovice, Neuveden, 149-150
- ZengY,et al. 2014. Functional type 2 photosynthetic reaction centers found in the rare bacterial phylum Gemmatimonadetes. PNAS, 111(21),7795–7800
- 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
- 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
- PerinG. et al. 2014. Biotechnological Optimization of Light Use Efficiency inNannochloropsisCultures for Biodiesel Production. Chemical Engineering Transactions 37, 763-768
- 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
- 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 inAnabaenasp. strain PCC 7120 investigated in vivo at single-cell level by chlorophyll fluorescence kinetic microscopy. Photosynthesis Research 116(1),79 – 91
- Dooley F.D.et al. 2013. Tolerance and response ofZostera marinaseedlings to hydrogen sulfide. Aquatic Botany 105,7 – 10
- Glaesener A.G.et al. 2013. Iron economy inChlamydomonas reinhardtii. Front Plant Sci. 4, 337
- Pilate Z. et al. 2013. Optical trapping of microalgae at 735–1064 nm, Photodamage assessment. Journal of Photochemistry and Photobiology B, Biology 121, 27 – 31
- OsticioliI.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
- Malasarn D. et al. 2013. Zinc deficiency impacts CO2 assimilation and disrupts copper homeostasis inChlamydomonas reinhardtii. Journal of Biological Chemistry 288, 10672 – 10683
- 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
- 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
- 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
- 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
- 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
- Jančula, D., Maršálková, E. & Maršálek, B. 2011. Organic flocculants for the removal of phytoplankton biomass.Aquaculture International, one – 10
- 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
- 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
- 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.
- 武田圭一. 2010. Exploration of genes that are involved in the functional maintenance of the PhotosystemⅠinSynechocystissp. PCC6803.
- Sommer, F.et al.2010. The CRR1 nutritional copper sensor inChlamydomonascontains two distinct metal–responsive domains.The Plant Cell Online22, 4098 – 4113
- 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
- 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
- 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 Biology 52, 171 – 175
- Ozaki,H. & Sonoike, K. 2009. Quantitative analysis of the relationship between induction kinetics of chlorophyll fluorescence and function of genes in the cyanobacteriumSynechocystissp. PCC 6803.Photosynthesis research101, 47 – 58
- 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
- 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
- Cournac, L. Interactions between photosynthetic, (chloro) respiratory and hydrogen oxidoreduction pathways in algae and cyanobacteria.
- 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
- Kühl, M. & Polerecky, L. 2008.Functional and structural imaging of phototrophic microbial communities and symbioses.Aquatic MicrobialEcology 53, 99 – 118
- Roose, J. L. 2008. Assembly and function of cyanobacterial photosystem II.ProQuest
- 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
- Allen, M. D., Kropat, J., Tottey, S., Del Campo, J. A. & Merchant, S. S.2007. Manganese deficiency inChlamydomonasresults 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
- 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
- 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
- Bartak, M., Solhaug, K. A., Vráblíková, H. & Gauslaa, Y.2006. Curling during desiccation protects the foliose lichenLobaria pulmonariaagainst photoinhibition. Oecologia 149, 553 – 560
- 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 the cyanobacteriumSynechocystissp. 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
- 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
- Adamec, F., Kaftan, D. & Nedbal, L.2005. Stress-Induced filament fragmentation ofList of Calothrix products(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 lichenXanthoria elegansrelated to daily courses of light, temperature and hydration, a field study from Galindez Island, maritime Antarctica.Lichenologist.37, 433 – 444
- Eriksson, M.et al. 2004. Genetic dissection of nutritional copper signaling inChlamydomonasdistinguishes regulatory and target genes.Genetics168, 795 – 807
- Gavel, A., Marsalek, B. & Adamek, Z.2004. Viability ofMicrocystiscolonies is not damaged by silver carp (Hypophthalmichthys molitrix) digestion.Algological Studies113, 189 – 194
- 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
- Schönfeld, C.et al.2004. The nucleus–encoded protein MOC1 is essential for mitochondrial light acclimation inChlamydomonas reinhardtii. Journal of Biological Chemistry279, 50366 – 50374
- 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
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