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OXI1激酶对于拟南芥中氧化爆发介导的信号传导是必需的。

OXI1 kinase is necessary for oxidative burst-mediated signalling in Arabidopsis.

作者信息

Rentel Maike C, Lecourieux David, Ouaked Fatma, Usher Sarah L, Petersen Lindsay, Okamoto Haruko, Knight Heather, Peck Scott C, Grierson Claire S, Hirt Heribert, Knight Marc R

机构信息

Department of Plant Sciences, University of Oxford, Oxford OX1 3RB, UK.

出版信息

Nature. 2004 Feb 26;427(6977):858-61. doi: 10.1038/nature02353.

Abstract

Active oxygen species (AOS) generated in response to stimuli and during development can function as signalling molecules in eukaryotes, leading to specific downstream responses. In plants these include such diverse processes as coping with stress (for example pathogen attack, wounding and oxygen deprivation), abscisic-acid-induced guard-cell closure, and cellular development (for example root hair growth). Despite the importance of signalling via AOS in eukaryotes, little is known about the protein components operating downstream of AOS that mediate any of these processes. Here we show that expression of an Arabidopsis thaliana gene (OXI1) encoding a serine/threonine kinase is induced in response to a wide range of H2O2-generating stimuli. OXI1 kinase activity is itself also induced by H2O2 in vivo. OXI1 is required for full activation of the mitogen-activated protein kinases (MAPKs) MPK3 and MPK6 after treatment with AOS or elicitor and is necessary for at least two very different AOS-mediated processes: basal resistance to Peronospora parasitica infection, and root hair growth. Thus, OXI1 is an essential part of the signal transduction pathway linking oxidative burst signals to diverse downstream responses.

摘要

在受到刺激以及发育过程中产生的活性氧物质(AOS)在真核生物中可作为信号分子,引发特定的下游反应。在植物中,这些反应包括应对胁迫(如病原体侵袭、创伤和缺氧)、脱落酸诱导的保卫细胞关闭以及细胞发育(如根毛生长)等多种不同过程。尽管AOS信号传导在真核生物中很重要,但对于介导这些过程的AOS下游的蛋白质成分却知之甚少。在此,我们表明,拟南芥中一个编码丝氨酸/苏氨酸激酶的基因(OXI1)的表达会因多种产生H2O2的刺激而被诱导。OXI1激酶活性在体内也会被H2O2诱导。在用AOS或激发子处理后,完全激活促分裂原活化蛋白激酶(MAPK)MPK3和MPK6需要OXI1,并且OXI1对于至少两个非常不同的AOS介导的过程是必需的:对寄生霜霉感染的基础抗性和根毛生长。因此,OXI1是将氧化爆发信号与多种下游反应联系起来的信号转导途径的重要组成部分。

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