Phosphorylation‐dependent activation of MAP4K1/2 by OST1 mediates ABA‐induced stomatal closure in Arabidopsis

拟南芥 结束语(心理学) 磷酸化 细胞生物学 化学 生物 生物化学 基因 政治学 突变体 法学
作者
Dongxue Tang,Dan Pei,Meixiang Zhang,Xiaoying Hu,Minmin Lu,Zhen Li,Yu Wang,Yi Wang,Shuhua Yang,Zhizhong Gong
出处
期刊:Journal of Integrative Plant Biology [Wiley]
卷期号:67 (11): 2912-2928 被引量:3
标识
DOI:10.1111/jipb.70030
摘要

ABSTRACT In higher plants, stomatal movements represent a critical physiological process that matains cellular water homestasis while enabling photosynthetic gas exchange. Open stomata 1 (OST1), a key protein kinase in the abscisic acid (ABA) signaling cascade, has been established as a central regulator of stomatal dynamics. This study reveals that two highly conserved mitogen‐activated protein kinase 1 (MAP4K1) and MAP4K2 are positive regulators in ABA promoted stomatal closure, and ABA‐activated OST1 potentiates MAP4K1/2 through phosphorylation at conserved serine and threonine residues (S166, T170, and S479/S488). The activated MAP4K1, in turn, phosphorylates two critical downstream targets: plasma membrane H + ‐ATPase 2 (AHA2) at residues T858, T881, and Y946, and slow anion channel‐associated 1 (SLAC1) at T114 and S116. Functional analysis demonstrates that the phosphomimetic (3D: S166D/T170D/S479D) MAP4K1, but not non‐phosphorylatable (3A: S166A/T170A/S479A) MAP4K1, could fully restore drought tolerance and reduced water loss in detached leaves of map4k1map4k2 double mutant. Our findings delineate a previously unrecognized signaling module comprising OST1–MAP4K1/2–AHA2/SLAC1, which crucially modulates ABA‐mediated stomatal regulation. This work advances our mechanistic understanding of phosphorylation cascades governing plant water relations and stress responses.
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