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◆ The Plant cell2026-09-11

A brassinosteroid signaling protein acts as an integrative regulator of K+ and Na+ transport in rice response to salt stress.

Di Chen, Quanxiang Tian, Qi Wu, Hongwei Cao, Kai Ding, Wen Jing, Chenxue Jing, Xiaoxia Tang, Wenjing Zhang, Jingya Yuan, Qun Zhang, Wenhua Zhang, Like Shen

原始摘要(英文原文)· Original abstract
Maintaining the cytosolic K+/Na+ homeostasis is crucial for plants' salt tolerance. Therefore, elucidating the regulatory mechanism governing K+/Na+ transport is pivotal to engineering salt-tolerant crops. Although many regulators have been shown specifically to modulate either Na+ or K+ transporters, little is known about integrative regulators that orchestrate the transport of both cations. In this study, we reveal that a rice basic helix-loop-helix (bHLH) transcription factor, BES1-INTERACTING MYC-LIKE1 (OsBIM1), negatively regulates K+/Na+ homeostasis under salt stress. Loss of OsBIM1 function conferred salt tolerance and K+/Na+ homeostasis in rice, whereas its overexpression produced the opposite effect. The K+ transporter OsHAK5 and transcription factor OsWRKY53 were identified as the targets of OsBIM1. By binding to E-box elements in their promoter regions, OsBIM1 not only repressed OsHAK5 expression and the root K+ uptake, but also trans-activated OsWRKY53 to suppress transcription of the Na+ transporter gene OsHKT1;5 and the Na+ unloading from xylem. OsBIM1 expression was attenuated by salt stress, and the loss of OsBIM1 function leads to synergistic upregulation of OsHAK5 and OsHKT1;5, thereby enhancing salt tolerance. As a positive regulator of Brassinosteroid (BR) signaling, OsBIM1 was also found to be indispensable for BR-induced attenuation of salt tolerance and involved in BR-mediated regulation of OsHAK5 and OsWRKY53 expression. This study reveals an integrative regulator of K+/Na+ transport and a negative regulatory mechanism by which BR affects salt tolerance, providing a promising strategy for breeding salt-tolerant rice.
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A brassinosteroid signaling protein acts as an integrative regulator of K+ and Na+ transport in rice response to salt stress. — 科研速览 Science Skim