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Xu X, Liu H, Praat M, et al. (2024) Stomatal opening under high temperatures is controlled by the OST1-regulated TOT3-AHA1 module. Nature Plants
Bono M, Ferrer-Gallego R, Pou A, et al. (2024) Chemical activation of ABA signaling in grapevine through the iSB09 and AMF4 ABA receptor agonists enhances water use efficiency. Physiologia Plantarum. 176: e14635
Pizzio GA, Mayordomo C, Illescas-Miranda J, et al. (2024) Basal ABA signaling balances transpiration and photosynthesis. Physiologia Plantarum. 176: e14494
Eckardt NA, Avin-Wittenberg T, Bassham DC, et al. (2024) The lowdown on breakdown: Open questions in plant proteolysis. The Plant Cell
Jiménez-Arias D, Morales-Sierra S, Suárez E, et al. (2023) Abscisic acid mimic-fluorine derivative 4 alleviates water deficit stress by regulating ABA-responsive genes, proline accumulation, CO2 assimilation, water use efficiency and better nutrient uptake in tomato plants. Frontiers in Plant Science. 14: 1191967
Yang C, Li X, Chen S, et al. (2023) ABI5-FLZ13 Module Transcriptionally Represses Growth-related Genes to Delay Seed Germination in Response to ABA. Plant Communications. 100636
Lozano-Juste J, Infantes L, Garcia-Maquilon I, et al. (2023) Structure-guided engineering of a receptor-agonist pair for inducible activation of the ABA adaptive response to drought. Science Advances. 9: eade9948
Chen W, Zhou H, Xu F, et al. (2022) CAR modulates plasma membrane nano-organization and immune signaling downstream of RALF1-FERONIA signaling pathway. The New Phytologist
Infantes L, Rivera-Moreno M, Daniel-Mozo M, et al. (2022) Structure-Based Modulation of the Ligand Sensitivity of a Tomato Dimeric Abscisic Acid Receptor Through a Glu to Asp Mutation in the Latch Loop. Frontiers in Plant Science. 13: 884029
Pizzio GA, Mayordomo C, Lozano-Juste J, et al. (2022) PYL1- and PYL8-like ABA Receptors of Play a Key Role in ABA Response in Seed and Vegetative Tissue. Cells. 11
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