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Plant Physiology|January 13, 2016
FamNet: A Framework to Identify Multiplied Modules Driving Pathway Expansion in PlantsColin Ruprecht, Amelie Mendrinna, Takayuki Tohge, et al.
Plant Physiology|January 28, 2026
Malate matters: disrupting bacterial-type phosphoenolpyruvate carboxylase (BTPC) rewires tomato fruit developmentFelix J Martínez Rivas, Milena A Smith, Zahra Zangishei, et al.
The New Phytologist|September 5, 2023
The genetic and physiological basis of Arabidopsis thaliana tolerance to Pseudomonas viridiflavaAlejandra Duque-Jaramillo, Nina Ulmer, Saleh Alseekh, et al.
The New Phytologist|June 21, 2016
Unravelling the in vivo regulation and metabolic role of the alternative oxidase pathway in C3 species under photoinhibitory conditionsIgor Florez-Sarasa, Miquel Ribas-Carbo, Néstor Fernández Del-Saz, et al.
Journal of Agricultural and Food Chemistry|October 8, 2020
Multiomic Analysis Elucidates the Reasons Underlying the Differential Metabolite Accumulation in Citrus Mature Leaves and Fruit Juice SacsLing-Xia Guo, Syed Bilal Hussain, Alisdair R Fernie, et al.
Plant Physiology|July 15, 2023
PYRIDOX(AM)INE 5'-PHOSPHATE OXIDASE3 of Arabidopsis thaliana maintains carbon/nitrogen balance in distinct environmental conditionsPriscille Steensma, Marion Eisenhut, Maite Colinas, et al.
Frontiers in Plant Science|August 30, 2017
Phytochrome A and B Regulate Primary Metabolism in Arabidopsis Leaves in Response to LightXiaozhen Han, Takayuki Tohge, Pierce Lalor, et al.
Plant Science : an International Journal of Experimental Plant Biology|August 13, 2014
Opportunities for improving leaf water use efficiency under climate change conditionsJorge Gago, Cyril Douthe, Igor Florez-Sarasa, et al.
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