State Key Lab of Plant Genomics, Institute of Genetics and Developmental Biology, INASEED, Chinese Academy of Sciences, 100101, Beijing, China.
College of Advanced Agricultural Sciences, University of Chinese Academy of Sciences, 100049, Beijing, China.
Nat Commun. 2020 Jan 24;11(1):518. doi: 10.1038/s41467-020-14313-0.
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.
乙烯在水稻适应水饱和环境的过程中起着至关重要的作用,但人们对其信号机制的了解仍然有限。在这里,通过对一个水稻乙烯反应突变体 mhz1 的分析,我们表明 MHZ1 正向调节根的乙烯反应。MHZ1 编码水稻组氨酸激酶 OsHK1。MHZ1/OsHK1 在保守的组氨酸残基处被自身磷酸化,并可以通过磷酸转移蛋白 OsAHP1/2 将磷酸化信号传递给反应调节剂 OsRR21。这个磷酸接力途径是根乙烯反应所必需的。乙烯受体 OsERS2 通过其 GAF 结构域与 MHZ1/OsHK1 相互作用,并抑制其激酶活性。遗传分析表明,MHZ1/OsHK1 在乙烯感知水平上发挥作用,并与 OsEIN2 介导的途径一起调节根的生长。我们的研究结果表明,MHZ1/OsHK1 部分独立于 OsEIN2 介导乙烯反应,并且直接受到乙烯受体的抑制,从而揭示了乙烯信号转导调控根生长的机制细节。