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水杨酸介导的拟南芥先天免疫由SIZ1 SUMO E3连接酶调控。

Salicylic acid-mediated innate immunity in Arabidopsis is regulated by SIZ1 SUMO E3 ligase.

作者信息

Lee Jiyoung, Nam Jaesung, Park Hyeong Cheol, Na Gunnam, Miura Kenji, Jin Jing Bo, Yoo Chan Yul, Baek Dongwon, Kim Doh Hoon, Jeong Jae Cheol, Kim Donggiun, Lee Sang Yeol, Salt David E, Mengiste Tesfaye, Gong Qingqiu, Ma Shisong, Bohnert Hans J, Kwak Sang-Soo, Bressan Ray A, Hasegawa Paul M, Yun Dae-Jin

机构信息

Division of Applied Life Science (BK21 Program), Plant Molecular Biology and Biotechnolgy Research Center and Environmental Biotechnology National Core Research Center, Graduate School of Gyeongsang National University, Jinju, Korea.

出版信息

Plant J. 2007 Jan;49(1):79-90. doi: 10.1111/j.1365-313X.2006.02947.x. Epub 2006 Dec 6.

Abstract

Reversible modifications of target proteins by small ubiquitin-like modifier (SUMO) proteins are involved in many cellular processes in yeast and animals. Yet little is known about the function of sumoylation in plants. Here, we show that the SIZ1 gene, which encodes an Arabidopsis SUMO E3 ligase, regulates innate immunity. Mutant siz1 plants exhibit constitutive systemic-acquired resistance (SAR) characterized by elevated accumulation of salicylic acid (SA), increased expression of pathogenesis-related (PR) genes, and increased resistance to the bacterial pathogen Pseudomonas syringae pv. tomato (Pst) DC3000. Transfer of the NahG gene to siz1 plants results in reversal of these phenotypes back to wild-type. Analyses of the double mutants, npr1 siz1, pad4 siz1 and ndr1 siz1 revealed that SIZ1 controls SA signalling. SIZ1 interacts epistatically with PAD4 to regulate PR expression and disease resistance. Consistent with these observations, siz1 plants exhibited enhanced resistance to Pst DC3000 expressing avrRps4, a bacterial avirulence determinant that responds to the EDS1/PAD4-dependent TIR-NBS-type R gene. In contrast, siz1 plants were not resistant to Pst DC3000 expressing avrRpm1, a bacterial avirulence determinant that responds to the NDR1-dependent CC-NBS-type R gene. Jasmonic acid (JA)-induced PDF1.2 expression and susceptibility to Botrytis cinerea were unaltered in siz1 plants. Taken together, these results demonstrate that SIZ1 is required for SA and PAD4-mediated R gene signalling, which in turn confers innate immunity in Arabidopsis.

摘要

小泛素样修饰物(SUMO)蛋白对靶蛋白的可逆修饰参与酵母和动物的许多细胞过程。然而,关于SUMO化在植物中的功能却知之甚少。在此,我们表明,编码拟南芥SUMO E3连接酶的SIZ1基因调控植物的先天免疫。siz1突变体植株表现出组成型系统获得性抗性(SAR),其特征为水杨酸(SA)积累增加、病程相关(PR)基因表达增强以及对细菌病原体丁香假单胞菌番茄致病变种(Pst)DC3000的抗性增强。将NahG基因导入siz1植株可使这些表型恢复为野生型。对双突变体npr1 siz1、pad4 siz1和ndr1 siz1的分析表明,SIZ1控制SA信号传导。SIZ1与PAD4上位性互作以调控PR基因表达和抗病性。与这些观察结果一致,siz1植株对表达avrRps4的Pst DC3000表现出增强的抗性,avrRps4是一种细菌无毒决定因子,可响应EDS1/PAD4依赖的TIR-NBS型R基因。相反,siz1植株对表达avrRpm1的Pst DC3000不具有抗性,avrRpm1是一种细菌无毒决定因子,可响应NDR1依赖的CC-NBS型R基因。茉莉酸(JA)诱导的PDF1.2表达以及对灰葡萄孢的易感性在siz1植株中未发生改变。综上所述,这些结果表明,SIZ1是SA和PAD4介导的R基因信号传导所必需的,进而赋予拟南芥先天免疫。

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