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拟南芥对无毒基因hopPsyA反应的自然变异使过敏反应与抗病性脱钩。

Natural variation in the Arabidopsis response to the avirulence gene hopPsyA uncouples the hypersensitive response from disease resistance.

作者信息

Gassmann Walter

机构信息

Division of Plant Sciences, University of Missouri-Columbia, MO 65211-7310, USA.

出版信息

Mol Plant Microbe Interact. 2005 Oct;18(10):1054-60. doi: 10.1094/MPMI-18-1054.

Abstract

The plant hypersensitive response (HR) is tightly associated with gene-for-gene resistance and has been proposed to function in containing pathogens at the invasion site. This tight association has made it difficult to unequivocally evaluate the importance of HR for plant disease resistance. Here, hopPsyA from Pseudomonas syringae pv. syringae 61 is identified as a new avirulence gene for Arabidopsis that triggers resistance in the absence of macroscopic HR. Resistance to P. syringae pv. tomato DC3000 expressing hopPsyA was EDS1-dependent and NDR1-independent. Intriguingly, several Arabidopsis accessions were resistant to DC3000(hopPsyA) in the absence of HR. This is comparable to the Arabidopsis response to avrRps4, but it is shown that hopPsyA does not signal through RPS4. In a cross between two hopPsyA-resistant accessions that differ in their HR response, the HR segregated as a recessive phenotype regulated by a single locus. This locus, HED1 (HR regulator in EDS1 pathway), is proposed to encode a protein whose activity can cause suppression of the EDS1-dependent HR signaling pathway. HED1-regulated symptomless gene-for-gene resistance responses may explain some cases of Arabidopsis resistance to bacteria that are classified as nonhost resistance.

摘要

植物过敏反应(HR)与基因对基因抗性紧密相关,并且有人提出其功能是在侵染位点抑制病原体。这种紧密关联使得难以明确评估HR对植物抗病性的重要性。在这里,丁香假单胞菌丁香致病变种61的hopPsyA被鉴定为拟南芥的一个新无毒基因,它在没有宏观HR的情况下引发抗性。对表达hopPsyA的丁香假单胞菌番茄致病变种DC3000的抗性是EDS1依赖性的且NDR1非依赖性的。有趣的是,几个拟南芥种质在没有HR的情况下对DC3000(hopPsyA)具有抗性。这与拟南芥对avrRps4的反应类似,但研究表明hopPsyA不通过RPS4发出信号。在两个对hopPsyA抗性不同且HR反应不同的种质之间的杂交中,HR作为由单个位点调控的隐性表型进行分离。这个位点,即HED1(EDS1途径中的HR调节因子),被认为编码一种蛋白质,其活性可导致对EDS1依赖性HR信号通路的抑制。HED1调控的无症状基因对基因抗性反应可能解释了拟南芥对细菌的一些抗性情况,这些抗性被归类为非寄主抗性。

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