Molecular Plant ( IF 17.1 ) Pub Date : 2021-01-13 , DOI: 10.1016/j.molp.2021.01.008 Haigang Ma 1 , Juan Li 1 , Ling Ma 1 , Peilun Wang 1 , Yuan Xue 1 , Ping Yin 1 , Jinghua Xiao 1 , Shiping Wang 1
Mitogen-activated protein kinase (MAPK) cascades regulate a myriad of plant biological processes, including disease resistance. Plant genomes encode a large number of MAPK kinase kinases (MAPKKKs) that can be divided into two subfamilies, namely MEKK-like kinases and Raf-like kinases. Thus far, the functions of MEKK-like MAPKKKs have been relatively well characterized, but the roles of Raf-like MAPKKKs in plant MAPK cascades remain less understood. Here, we report the role of OsEDR1, a Raf-like MAPKKK, in the regulation of the MAPK cascade in rice response to the bacterial pathogen Xanthomonas oryzae pv. oryzicola (Xoc). We found that OsEDR1 inhibits OsMPKK10.2 (a MAPK kinase) activity through physical interaction. Upon Xoc infection, OsMPKK10.2 is phosphorylated at S304 to activate OsMPK6 (a MAPK). Interestingly, activated OsMPK6 phosphorylates OsEDR1 at S861, which destabilizes OsEDR1 and thus releases the inhibition of OsMPKK10.2, leading to increased OsMPKK10.2 activity and enhanced resistance of rice plants to Xoc. Taken together, these results provide new insights into the functions of Raf-like kinases in the regulation of the MAPK cascade in plant immunity.
中文翻译:
病原体诱导的 OsMPKK10.2-OsMPK6 级联磷酸化 Raf 样激酶 OsEDR1 并抑制其支架功能以促进水稻抗病性
Mitogen-activated protein kinase (MAPK) cascades regulate a myriad of plant biological processes, including disease resistance. Plant genomes encode a large number of MAPK kinase kinases (MAPKKKs) that can be divided into two subfamilies, namely MEKK-like kinases and Raf-like kinases. Thus far, the functions of MEKK-like MAPKKKs have been relatively well characterized, but the roles of Raf-like MAPKKKs in plant MAPK cascades remain less understood. Here, we report the role of OsEDR1, a Raf-like MAPKKK, in the regulation of the MAPK cascade in rice response to the bacterial pathogen Xanthomonas oryzae pv. oryzicola (Xoc). We found that OsEDR1 inhibits OsMPKK10.2 (a MAPK kinase) activity through physical interaction. Upon XocOsMPKK10.2 在 S304 处被磷酸化以激活 OsMPK6(一种 MAPK)。有趣的是,激活的 OsMPK6 在 S861 位点磷酸化 OsEDR1,使 OsEDR1 不稳定,从而释放对 OsMPKK10.2 的抑制,导致 OsMPKK10.2 活性增加,并增强水稻对Xoc 的抗性。总之,这些结果为了解 Raf 样激酶在调节植物免疫中的 MAPK 级联反应中的功能提供了新的见解。