Arabidopsis Raf-like kinases act as positive regulators of subclass III SnRK2 in osmostress signaling

被引:89
|
作者
Katsuta, Shohei [1 ]
Masuda, Goro [1 ]
Bak, Hyeokjin [1 ]
Shinozawa, Akihisa [1 ,4 ]
Kamiyama, Yoshiaki [2 ]
Umezawa, Taishi [2 ]
Takezawa, Daisuke [3 ]
Yotsui, Izumi [1 ]
Taji, Teruaki [1 ]
Sakata, Yoichi [1 ]
机构
[1] Tokyo Univ Agr, Dept Biosci, Tokyo 1568502, Japan
[2] Tokyo Univ Agr & Technol, Grad Sch Bioapplicat & Syst Engn, Koganei, Tokyo 1848588, Japan
[3] Saitama Univ, Grad Sch Sci & Engn, Saitama 3388570, Japan
[4] Tokyo Univ Agr, NGRC, Setagaya Ku, 1-1-1 Sakuragaoka, Tokyo 1568502, Japan
来源
PLANT JOURNAL | 2020年 / 103卷 / 02期
基金
日本科学技术振兴机构;
关键词
Raf-like kinase; SnRK2; osmostress; ABA; Arabidopsis; B3-MAPKKK; ACTIVATED PROTEIN-KINASES; ABSCISIC-ACID; HYPEROSMOTIC STRESS; RESPONSES; ETHYLENE; FAMILY; PROTEIN-KINASES-2; IDENTIFICATION; PHOSPHATASES; DEFICIENT;
D O I
10.1111/tpj.14756
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Given their sessile nature, land plants must use various mechanisms to manage dehydration under water-deficit conditions. Osmostress-induced activation of the SNF1-related protein kinase 2 (SnRK2) family elicits physiological responses such as stomatal closure to protect plants during drought conditions. With the plant hormone ABA receptors [PYR (pyrabactin resistance)/PYL (pyrabactin resistance-like)/RCAR (regulatory component of ABA receptors) proteins] and group A protein phosphatases, subclass III SnRK2 also constitutes a core signaling module for ABA, and osmostress triggers ABA accumulation. How SnRK2 is activated through ABA has been clarified, although its activation through osmostress remains unclear. Here, we show that Arabidopsis ABA and abiotic stress-responsive Raf-like kinases (AtARKs) of the B3 clade of the mitogen-activated kinase kinase kinase (MAPKKK) family are crucial in SnRK2-mediated osmostress responses. Disruption of AtARKs in Arabidopsis results in increased water loss from detached leaves because of impaired stomatal closure in response to osmostress. Our findings obtained in vitro and in planta have shown that AtARKs interact physically with SRK2E, a core factor for stomatal closure in response to drought. Furthermore, we show that AtARK phosphorylates S171 and S175 in the activation loop of SRK2E in vitro and that Atark mutants have defects in osmostress-induced subclass III SnRK2 activity. Our findings identify a specific type of B3-MAPKKKs as upstream kinases of subclass III SnRK2 in Arabidopsis. Taken together with earlier reports that ARK is an upstream kinase of SnRK2 in moss, an existing member of a basal land plant lineage, we propose that ARK/SnRK2 module is evolutionarily conserved across 400 million years of land plant evolution for conferring protection against drought.
引用
收藏
页码:634 / 644
页数:11
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