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WRKY70调节植物防御中信号通路的选择。

WRKY70 modulates the selection of signaling pathways in plant defense.

作者信息

Li Jing, Brader Günter, Kariola Tarja, Palva E Tapio

机构信息

Viikki Biocenter, Division of Genetics, Department of Biological and Environmental Sciences, Faculty of Biosciences, University of Helsinki, PO Box 56, FI-00014, Helsinki, Finland.

出版信息

Plant J. 2006 May;46(3):477-91. doi: 10.1111/j.1365-313X.2006.02712.x.

Abstract

Cross-talk between signal transduction pathways is a central feature of the tightly regulated plant defense signaling network. The potential synergism or antagonism between defense pathways is determined by recognition of the type of pathogen or pathogen-derived elicitor. Our studies have identified WRKY70 as a node of convergence for integrating salicylic acid (SA)- and jasmonic acid (JA)-mediated signaling events during plant response to bacterial pathogens. Here, we challenged transgenic plants altered in WRKY70 expression as well as WRKY70 knockout mutants of Arabidopsis with the fungal pathogens Alternaria brassicicola and Erysiphe cichoracearum to elucidate the role of WRKY70 in modulating the balance between distinct defense responses. Gain or loss of WRKY70 function causes opposite effects on JA-mediated resistance to A. brassicicola and the SA-mediated resistance to E. cichoracearum. While the up-regulation of WRKY70 caused enhanced resistance to E. cichoracearum, it compromised plant resistance to A. brassicicola. Conversely, down-regulation or insertional inactivation of WRKY70 impaired plant resistance to E. cichoracearum. Over-expression of WRKY70 resulted in the suppression of several JA responses including expression of a subset of JA- and A. brassicicola-responsive genes. We show that this WRKY70-controlled suppression of JA-signaling is partly executed by NPR1. The results indicate that WRKY70 has a pivotal role in determining the balance between SA-dependent and JA-dependent defense pathways.

摘要

信号转导途径之间的相互作用是植物防御信号网络严格调控的核心特征。防御途径之间潜在的协同或拮抗作用取决于对病原体类型或病原体衍生激发子的识别。我们的研究已确定WRKY70是植物对细菌病原体作出反应期间整合水杨酸(SA)和茉莉酸(JA)介导的信号事件的汇聚节点。在此,我们用真菌病原体芸苔链格孢和菊苣白粉菌对WRKY70表达改变的转基因植物以及拟南芥WRKY70基因敲除突变体进行挑战,以阐明WRKY70在调节不同防御反应之间平衡中的作用。WRKY70功能的获得或丧失对JA介导的对芸苔链格孢的抗性和SA介导的对菊苣白粉菌的抗性产生相反影响。虽然WRKY70的上调导致对菊苣白粉菌的抗性增强,但它损害了植物对芸苔链格孢的抗性。相反,WRKY70的下调或插入失活削弱了植物对菊苣白粉菌的抗性。WRKY70的过表达导致几种JA反应受到抑制,包括一部分JA和芸苔链格孢反应基因的表达。我们表明,这种由WRKY70控制的对JA信号的抑制部分由NPR1执行。结果表明,WRKY70在确定SA依赖性和JA依赖性防御途径之间的平衡中起关键作用。

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