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非典型抗性基因RPW8招募基础防御成分以实现拟南芥对白粉病的抗性。

The atypical resistance gene, RPW8, recruits components of basal defence for powdery mildew resistance in Arabidopsis.

作者信息

Xiao Shunyuan, Calis Ozer, Patrick Elaine, Zhang Guangmin, Charoenwattana Piyavadee, Muskett Paul, Parker Jane E, Turner John G

机构信息

School of Biological Science, University of East Anglia, Norwich NR4 7TJ, UK.

出版信息

Plant J. 2005 Apr;42(1):95-110. doi: 10.1111/j.1365-313X.2005.02356.x.

Abstract

Genetic studies have identified a number of components of signal transduction pathways leading to plant disease resistance and the accompanying hypersensitive response (HR) following detection of pathogens by plant resistance (R) genes. In Arabidopsis, the majority of R proteins so far characterized belong to a plant superfamily that have a central nucleotide-binding site and C-terminal leucine-rich-repeats (NB-LRRs). Another much less prevalent class comprises RPW8.1 and RPW8.2, two related proteins that possess a putative N-terminal transmembrane domain and a coiled-coil motif, and confer broad-spectrum resistance to powdery mildew. Here we investigated whether RPW8.1 and RPW8.2 engage known pathway(s) for defence signalling. We show that RPW8.1 and RPW8.2 recruit, in addition to salicylic acid and EDS1, the other NB-LRR gene-signalling components PAD4, EDS5, NPR1 and SGT1b for activation of powdery mildew resistance and HR. In contrast, NDR1, RAR1 and PBS3 that are required for function of certain NB-LRR R genes, and COI1 and EIN2 that operate, respectively, in the jasmonic acid and ethylene signalling pathways, do not contribute to RPW8.1 and RPW8.2-mediated resistance. We further demonstrate that EDR1, a gene encoding a conserved MAPKK kinase, exerts negative regulation on HR cell death and powdery mildew resistance by limiting the transcriptional amplification of RPW8.1 and RPW8.2. Our results suggest that RPW8.1 and RPW8.2 stimulate a conserved basal defence pathway that is negatively regulated by EDR1.

摘要

遗传学研究已经确定了信号转导途径的一些组成部分,这些途径在植物抗性(R)基因检测到病原体后,导致植物抗病性以及随之而来的超敏反应(HR)。在拟南芥中,到目前为止所鉴定的大多数R蛋白属于一个植物超家族,该家族具有一个中央核苷酸结合位点和C端富含亮氨酸重复序列(NB-LRRs)。另一个不太常见的类别包括RPW8.1和RPW8.2,这两个相关蛋白具有一个假定的N端跨膜结构域和一个卷曲螺旋基序,并对白粉病具有广谱抗性。在这里,我们研究了RPW8.1和RPW8.2是否参与已知的防御信号传导途径。我们发现,除了水杨酸和EDS1之外,RPW8.1和RPW8.2还招募其他NB-LRR基因信号成分PAD4、EDS5、NPR1和SGT1b来激活对白粉病的抗性和HR。相比之下,某些NB-LRR R基因功能所需的NDR1、RAR1和PBS3,以及分别在茉莉酸和乙烯信号通路中起作用的COI1和EIN2,对RPW8.1和RPW8.2介导的抗性没有贡献。我们进一步证明,编码保守的MAPKK激酶的基因EDR1通过限制RPW8.1和RPW8.2的转录扩增,对HR细胞死亡和白粉病抗性发挥负调控作用。我们的结果表明,RPW8.1和RPW8.2刺激了一条由EDR1负调控的保守基础防御途径。

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