Plant Detech, a partner of BoPu Te, is pleased to participate in the PAG30 International Conference on Plant and Animal Genomics
The PAG Conference is an international academic conference on animal, plant, and microbial genomics research, held annually in mid January at the Town&Country Conference Center in San Diego, California, USA. Each conference attracts over 3000 experts and scholars from around the world. Experts gathered together to report and discuss the latest research progress in animal, plant, and microbial genomics over the past year, with extensive and in-depth content. With the successive completion of various biological genome sequencing, international research on animal, plant, and microbial genomics is advancing rapidly, and a series of new methods and technologies are showcased at conferences every year. By attending the PAG conference, one can stay informed about the latest developments in international animal and plant genomics research, as well as the cutting-edge developments in the agricultural biotechnology industry.

Plant DiTech will participate in the PAG30 International Conference on Plant and Animal Genomics, where Professor Robert from Wageningen University will give a presentation on the application of Plantarray technology. Keren Moshelion, President of Plant DiTech, will deliver a speech titled "Genome to Phenomenon: Next Generation Sensors for Sensing Plant and Environment" at the conference, providing a detailed introduction to the application of PlantArray technology.
Plant DiTech provides innovative tools for deep diagnosis of plant environments, enabling scientists, breeders, and agricultural enterprises to make new discoveries and achieve better yields in different environments, while shortening product development and time to market. This fully automated phenotype analysis platform significantly enhances the learning of plant activity under stress and climate - assessing plant yield potential within a few days rather than the entire season. This system is a high-throughput phenotype platform that can capture the physiological soil atmosphere continuum of plants under automatically adjusted soil and water conditions, and personalize each plant with real-time analysis of the results. Plant Ditech company is located at booth 331.
In the past decade, Plant DiTech has developed a solution - the Plantarray functional phenotype research system - to predict yield and provide valuable physiological analysis tools for agricultural scientists, helping scientists, researchers, and breeders transform complex plant environment interactions into practical, useful, and easy-to-use tools. Plantarray is essentially a high-throughput, multi-sensor physiological phenotype platform based on weighing, as well as a universal platform for plant stress biology research. The system can sustainably and real-time measure the real-time water flow in the soil plant air (SPAC) of each plant in the array under different environmental conditions. Directly measure the water balance and biomass increase of the root and stem leaf systems, calculate plant physiological parameters, and assess plant feedback on dynamic environments. The system quantitatively compares the response of plants to different treatments, predicts plant growth and productivity in an effective, easy-to-use, and non-destructive manner, and is widely used in biotic and abiotic stress, as well as accelerated breeding research in plant cultivation. Stress research covers drought stress, salt stress, heavy metal stress, heat and cold stress, light stress, irrigation/nutrient, CO2 indication, plant health, and other fields. The PlantArray phenotype platform accelerates researchers' ability to provide solutions for food security under environmental stress conditions such as drought and temperature.

At present, researchers and corporate institutions from various countries have published nearly 50 high-quality papers using this system. The latest article was published in the journal New Phytologist (Impact Factor 10.3), titled "Tree tobacco (Nicotiana glauca) cutting wax composition is essential for leaf retention during stress, facilitating a speedy recovery following rehydration".
