Soil salinity is a severe threat to agriculture and plant growth. Under high salinity conditions, ammonium (NH4+) is the predominant inorganic nitrogen source used by plants due to limited nitrification. However, how ammonium shapes the plant response to salt stress remains a mystery. Here, we demonstrate that the growth of Arabidopsis (Arabidopsis thaliana) seedlings is less sensitive to salt stress when provided with ammonium instead of nitrate (NO3-), a response that is mediated by ammonium transporters (AMTs). We further show that the kinase SALT OVERLY SENSITIVE2 (SOS2) physically interacts with and activates AMT1;1 by directly phosphorylating the nonconserved serine residue Ser-450 in the C-terminal region. In agreement with the involvement of SOS2, ammonium uptake was lower in sos2 mutants grown under salt stress relative to the wild type. Moreover, AMT-mediated ammonium uptake enhanced salt-induced SOS2 kinase activity. Together, our study demonstrates that SOS2 activates AMT1;1 to fine-tune and maintain ammonium uptake and optimize the plant salt stress response.
SALT OVERLY SENSITIVE2 and AMMONIUM TRANSPORTER1;1 contribute to plant salt tolerance by maintaining ammonium uptake.
盐过度敏感2和铵转运蛋白1;1通过维持铵的吸收来促进植物的耐盐性
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作者:Ma Liang, Qin De-Bin, Sun Liping, Zhang Kaina, Yu Xiang, Dang An-Kai, Hou Shengfan, Zhao Xiaoyun, Yang Yongqing, Wang Yang, Chen Yuhang, Guo Yan
| 期刊: | Plant Cell | 影响因子: | 11.600 |
| 时间: | 2025 | 起止号: | 2025 Feb 13; 37(2):koaf034 |
| doi: | 10.1093/plcell/koaf034 | 研究方向: | 免疫/内分泌 |
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