拟南芥
磷酸化
爪蟾
钾
盐(化学)
化学
钠
细胞生物学
锂(药物)
生物化学
基因
生物
突变体
内分泌学
有机化学
物理化学
作者
Xiaoxiao Liu,Lei Zhang,Zeqi Zhao,Yue Zheng,Yue Ren,Xiaomin Zhao,Shizhong Zhang,Guodong Yang,Jinguang Huang,Yan Kang,Chunlong Li,Chengchao Zheng,Lei Zhang
出处
期刊:Cell Reports
[Cell Press]
日期:2025-05-20
卷期号:44 (6): 115729-115729
被引量:10
标识
DOI:10.1016/j.celrep.2025.115729
摘要
Although preventing sodium ion import is crucial for salt tolerance, the mechanisms and the Na+ importers involved remain unclear. We identified NRT1.2/NPF4.6/AIT1 as a non-selective Na+ importer. NRT1.2 overexpression in Arabidopsis increased salt sensitivity due to Na+ accumulation, while nrt1.2 mutants exhibited opposite results. Non-invasive micro-test technology indicated Na+ uptake capability of NRT1.2 in Arabidopsis roots. When expressed in Xenopus laevis oocytes, NRT1.2 displayed low-pH-dependent and NO3--promoted Na+, K+, and Li+ importer capacity, conferring higher potassium and lithium tolerance in NRT1.2 overexpression plants. Mechanically, salt overly sensitive 2 (SOS2) phosphorylated NRT1.2 at Thr248, reducing its Na+ import and preventing excessive Na+ accumulation. Prolonged salt stress also downregulated NRT1.2 transcripts. In summary, our findings unveil a role of NRT1.2 in Na+ transport and a regulatory pathway via SOS2-mediated phosphorylation of NRT1.2 at Thr248, crucial for plant salt-stress adaptation.
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