MAP4K1 and MAP4K2 regulate ABA-induced and Ca<sup>2+</sup>-mediated stomatal closure in <i>Arabidopsis</i>.

Yamashita, Kota; Katagiri, Sotaro; Takase, Hinano; Li, Yangdan; Oishi, Anzu; Otoguro, Airi; Kamiyama, Yoshiaki; Yamauchi, Shota et al. · Sci Adv · 2025

basic_science · Level V

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Abstract

Abscisic acid (ABA)-induced stomatal closure limits water loss from plants under drought stress. To investigate the signaling pathways involved in ABA-induced stomatal closure, we performed a phosphoproteomic analysis of ABA-treated <i>Arabidopsis</i> guard cell protoplasts (GCPs). We found that ABA-responsive phosphorylation of MITOGEN-ACTIVATED PROTEIN 4 KINASE 1 (MAP4K1) was significantly down-regulated in SnRK2-disrupted mutants. Subsequent biochemical assays showed that Ser<sup>479</sup> of MAP4K1 is directly phosphorylated by SRK2E/OST1, a central ABA kinase. Mutational analyses of MAP4K1 and MAP4K2 revealed that both kinases positively regulate ABA-induced stomatal closure and that Ser<sup>479</sup> of MAP4K1 is required for this phenotype. In <i>map4k1map4k2</i> double mutants, stomatal closure was induced by applying exogenous Ca<sup>2+</sup> but not H<sub>2</sub>O<sub>2</sub>. Electrophysiological experiments showed that MAP4K1/2 is required for ABA-dependent activation of Ca<sup>2+</sup>-permeable channels in GCPs. Together, our results indicate that SnRK2 and MAP4K function as a signaling module to regulate the Ca<sup>2+</sup>-mediated pathway in ABA-induced stomatal closure.

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