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MAP 激酶激酶与 SymRK 相互作用,调节豌豆根瘤器官的发生。

A MAP kinase kinase interacts with SymRK and regulates nodule organogenesis in Lotus japonicus.

机构信息

State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Plant Cell. 2012 Feb;24(2):823-38. doi: 10.1105/tpc.112.095984. Epub 2012 Feb 21.

Abstract

The symbiosis receptor kinase, SymRK, is required for root nodule development. A SymRK-interacting protein (SIP2) was found to form protein complex with SymRK in vitro and in planta. The interaction between SymRK and SIP2 is conserved in legumes. The SIP2 gene was expressed in all Lotus japonicus tissues examined. SIP2 represents a typical plant mitogen-activated protein kinase kinase (MAPKK) and exhibited autophosphorylation and transphosphorylation activities. Recombinant SIP2 protein could phosphorylate casein and the Arabidopsis thaliana MAP kinase MPK6. SymRK and SIP2 could not use one another as a substrate for phosphorylation. Instead, SymRK acted as an inhibitor of SIP2 kinase when MPK6 was used as a substrate, suggesting that SymRK may serve as a negative regulator of the SIP2 signaling pathway. Knockdown expression of SIP2 via RNA interference (RNAi) resulted in drastic reduction of nodules formed in transgenic hairy roots. A significant portion of SIP2 RNAi hairy roots failed to form a nodule. In these roots, the expression levels of SIP2 and three marker genes for infection thread and nodule primordium formation were downregulated drastically, while the expression of two other MAPKK genes were not altered. These observations demonstrate an essential role of SIP2 in the early symbiosis signaling and nodule organogenesis.

摘要

共生受体激酶 SymRK 是根瘤发育所必需的。发现 SymRK 相互作用蛋白 (SIP2) 在体外和体内与 SymRK 形成蛋白复合物。豆科植物中 SymRK 和 SIP2 之间的相互作用是保守的。SIP2 基因在所有检查的 Lotus japonicus 组织中均有表达。SIP2 代表一种典型的植物丝裂原活化蛋白激酶激酶 (MAPKK),并表现出自身磷酸化和转磷酸化活性。重组 SIP2 蛋白可磷酸化酪蛋白和拟南芥 MAP 激酶 MPK6。SymRK 和 SIP2 不能相互作为磷酸化的底物。相反,当使用 MPK6 作为底物时,SymRK 充当 SIP2 激酶的抑制剂,表明 SymRK 可能作为 SIP2 信号通路的负调节剂。通过 RNA 干扰 (RNAi) 敲低 SIP2 的表达导致转基因 hairy roots 形成的根瘤数量急剧减少。相当一部分 SIP2 RNAi hairy roots 未能形成根瘤。在这些根中,SIP2 和三个感染线和根瘤原基形成标记基因的表达水平急剧下调,而另外两个 MAPKK 基因的表达没有改变。这些观察结果表明 SIP2 在早期共生信号转导和根瘤器官发生中起着重要作用。

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