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Plant Physiology|July 25, 2014
The reductase activity of the Arabidopsis caleosin RESPONSIVE TO DESSICATION20 mediates gibberellin-dependent flowering time, abscisic acid sensitivity, and tolerance to oxidative stressElizabeth Blée, Benoît Boachon, Michel Burcklen, et al.The Plant Cell|October 21, 2016
Characterization of a Pipecolic Acid Biosynthesis Pathway Required for Systemic Acquired ResistancePingtao Ding, Dmitrij Rekhter, Yuli Ding, et al.Journal of Fungi (Basel, Switzerland)|May 28, 2022
The Sporisorium reilianum Effector Vag2 Promotes Head Smut Disease via Suppression of Plant Defense ResponsesYulei Zhao, Nisha Agrawal, Hassan Ghareeb, et al.Planta|January 10, 2003
Development of Agrobacterium tumefaciens C58-induced plant tumors and impact on host shoots are controlled by a cascade of jasmonic acid, auxin, cytokinin, ethylene and abscisic acidDmitry Veselov, Markus Langhans, Wolfram Hartung, et al.Biochimica Et Biophysica Acta|June 26, 2013
A structural model of PpoA derived from SAXS-analysis-implications for substrate conversionChristian Koch, Giancarlo Tria, Alistair J Fielding, et al.Plant Physiology|September 13, 2002
Characterization of a novel lipoxygenase-independent senescence mechanism in Alstroemeria peruviana floral tissueMichael K Leverentz, Carol Wagstaff, Hilary J Rogers, et al.Plant Physiology|December 26, 2013
Two fatty acid desaturases, STEAROYL-ACYL CARRIER PROTEIN Δ9-DESATURASE6 and FATTY ACID DESATURASE3, are involved in drought and hypoxia stress signaling in Arabidopsis crown gallsJoern Klinkenberg, Hanna Faist, Stefanie Saupe, et al.Plos One|October 14, 2016
Metabolome Analysis Reveals Betaine Lipids as Major Source for Triglyceride Formation, and the Accumulation of Sedoheptulose during Nitrogen-Starvation of Phaeodactylum tricornutumJennifer Popko, Cornelia Herrfurth, Kirstin Feussner, et al.The New Phytologist|July 26, 2024
Contrasting and conserved roles of NPR pathways in diverged land plant lineagesHyung-Woo Jeon, Hidekazu Iwakawa, Satoshi Naramoto, et al.The Journal of Biological Chemistry|February 10, 2011
Two pathways of sphingolipid biosynthesis are separated in the yeast Pichia pastorisPhilipp Ternes, Tobias Wobbe, Marnie Schwarz, et al.Pageof 31