Phosphorylation of sugar transporter TST2 by protein kinase CPK27 enhances drought tolerance in tomato

Author:

Zhu Changan1ORCID,Jing Beiyu1,Lin Teng1,Li Xinyan1ORCID,Zhang Min1,Zhou Yanhong12ORCID,Yu Jingquan12ORCID,Hu Zhangjian12ORCID

Affiliation:

1. Department of Horticulture, Zhejiang University , Hangzhou 310058 , China

2. Hainan Institute, Zhejiang University, Yazhou Bay Science and Technology City , Sanya 572025 , China

Abstract

Abstract Drought is a major environmental stress threatening plant growth and productivity. Calcium-dependent protein kinases (CPKs) are plant-specific Ca2+ sensors with multifaceted roles in signaling drought responses. Nonetheless, the mechanisms underpinning how CPKs transmit downstream drought signaling remain unresolved. Through genetic investigations, our study unveiled that knocking out CPK27 reduced drought tolerance in tomato (Solanum lycopersicum) plants and impaired abscisic acid (ABA)-orchestrated plant response to drought stress. Proteomics and phosphoproteomics revealed that CPK27-dependent drought-induced proteins were highly associated with the sugar metabolism pathway, which was further verified by reduced soluble sugar content in the cpk27 mutant under drought conditions. Using protein–protein interaction assays and phosphorylation assessments, we demonstrated that CPK27 directly interacted with and phosphorylated tonoplast sugar transporter 2 (TST2), promoting intercellular soluble sugar accumulation during drought stress. Furthermore, Ca2+ and ABA enhanced CPK27-mediated interaction and phosphorylation of TST2, thus revealing a role of TST2 in tomato plant drought tolerance. These findings extend the toolbox of potential interventions for enhancing plant drought stress tolerance and provide a target to improve drought tolerance by manipulating CPK27-mediated soluble sugar accumulation for rendering drought tolerance in a changing climate.

Funder

National Natural Science Foundation of China

Modern Agro-industry Technology Research System of China

Starry Night Science Fund of Zhejiang University Shanghai Institute for Advanced Study

Publisher

Oxford University Press (OUP)

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. SlCPK27 cross-links SlHY5 and SlPIF4 in brassinosteroid-dependent photo- and thermo-morphogenesis in tomato;Proceedings of the National Academy of Sciences;2024-08-27

2. Focus on vegetable crops;Plant Physiology;2024-05-01

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