Differential concentrations of phytohormone trigger distinct outputs, which provides a mechanism for the plasticity of plant development and an adaptation strategy among plants to changing environments. However, the underlying mechanisms of the differential responses remain unclear. Here we report that a high concentration of auxin, distinct from the effect of low auxin concentration, enhances abscisic acid (ABA) responses in Arabidopsis thaliana, which partially relies on TRANS-MEMBERANE KINASE 1 (TMK1), a key regulator in auxin signaling. We show that high auxin and TMK1 play essential and positive roles in ABA signaling through regulating ABA INSENSITIVE 1 and 2 (ABI1/2), two negative regulators of the ABA pathway. TMK1 inhibits the phosphatase activity of ABI2 by direct phosphorylation of threonine 321 (T321), a conserved phosphorylation site in ABI2 proteins, whose phosphorylation status is important for both auxin and ABA responses. This TMK1-dependent auxin signaling in the regulation of ABA responses provides a possible mechanism underlying the high auxin responses in plants and an alternative mechanism involved in the coordination between auxin and ABA signaling.
TMK1-based auxin signaling regulates abscisic acid responses via phosphorylating ABI1/2 in Arabidopsis.
TMK1 介导的生长素信号传导通过磷酸化拟南芥中的 ABI1/2 来调节脱落酸反应
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作者:Yang Jie, He Hang, He Yuming, Zheng Qiaozhen, Li Qingzhong, Feng Xin, Wang Pengcheng, Qin Guocheng, Gu Yangtao, Wu Ping, Peng Chao, Sun Shilei, Zhang Yi, Wen Mingzhang, Chen Rong, Zhao Yang, Xu Tongda
| 期刊: | Proceedings of the National Academy of Sciences of the United States of America | 影响因子: | 9.100 |
| 时间: | 2021 | 起止号: | 2021 Jun 15; 118(24):e2102544118 |
| doi: | 10.1073/pnas.2102544118 | 研究方向: | 信号转导 |
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