Ethylene plays essential roles during adaptive responses to water-saturating environments in rice, but knowledge of its signaling mechanism remains limited. Here, through an analysis of a rice ethylene-response mutant mhz1, we show that MHZ1 positively modulates root ethylene responses. MHZ1 encodes the rice histidine kinase OsHK1. MHZ1/OsHK1 is autophosphorylated at a conserved histidine residue and can transfer the phosphoryl signal to the response regulator OsRR21 via the phosphotransfer proteins OsAHP1/2. This phosphorelay pathway is required for root ethylene responses. Ethylene receptor OsERS2, via its GAF domain, physically interacts with MHZ1/OsHK1 and inhibits its kinase activity. Genetic analyses suggest that MHZ1/OsHK1 acts at the level of ethylene perception and works together with the OsEIN2-mediated pathway to regulate root growth. Our results suggest that MHZ1/OsHK1 mediates the ethylene response partially independently of OsEIN2, and is directly inhibited by ethylene receptors, thus revealing mechanistic details of ethylene signaling for root growth regulation.
Histidine kinase MHZ1/OsHK1 interacts with ethylene receptors to regulate root growth in rice.
组氨酸激酶 MHZ1/OsHK1 与乙烯受体相互作用,调节水稻根系生长
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作者:Zhao He, Duan Kai-Xuan, Ma Biao, Yin Cui-Cui, Hu Yang, Tao Jian-Jun, Huang Yi-Hua, Cao Wu-Qiang, Chen Hui, Yang Chao, Zhang Zhi-Guo, He Si-Jie, Zhang Wan-Ke, Wan Xiang-Yuan, Lu Tie-Gang, Chen Shou-Yi, Zhang Jin-Song
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2020 | 起止号: | 2020 Jan 24; 11(1):518 |
| doi: | 10.1038/s41467-020-14313-0 | 研究方向: | 其它 |
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