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Arabidopsis TAO1 is a TIR-NB-LRR protein that contributes to disease resistance induced by the Pseudomonas syringae effector AvrB

机译:拟南芥TAO1是一种TIR-NB-LRR蛋白,可促进丁香假单胞菌效应子AvrB诱导的抗病性

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摘要

The type III effector protein encoded by avirulence gene B (AvrB) is delivered into plant cells by pathogenic strains of Pseudomonas syringae. There, it localizes to the plasma membrane and triggers immunity mediated by the Arabidopsis coiled-coil (CC)-nucleotide binding (NB)-leucine-rich repeat (LRR) disease resistance protein RPM1. The sequence unrelated type III effector avirulence protein encoded by avirulence gene Rpm1 (AvrRpm1) also activates RPM1. AvrB contributes to virulence after delivery from P. syringae in leaves of susceptible soybean plants, and AvrRpm1 does the same in Arabidopsis rpm1 plants. Conditional overexpression of AvrB in rpm1 plants results in leaf chlorosis. In a genetic screen for mutants that lack AvrB-dependent chlorosis in an rpm1 background, we isolated TAO1 (target of AvrB operation), which encodes a Toll-IL-1 receptor (TIR)-NB-LRR disease resistance protein. In rpm1 plants, TAO1 function results in the expression of the pathogenesis-related protein 1 (PR-1) gene, suggestive of a defense response. In RPM1 plants, TAO1 contributes to disease resistance in response to Pto (P. syringae pathovars tomato) DC3000(avrB), but not against Pto DC3000(avrRpm1). The tao1–5 mutant allele, a stop mutation in the LRR domain of TAO1, posttranscriptionally suppresses RPM1 accumulation. These data provide evidence of genetically separable disease resistance responses to AvrB and AvrRpm1 in Arabidopsis. AvrB activates both RPM1, a CC-NB-LRR protein, and TAO1, a TIR-NB-LRR protein. These NB-LRR proteins then act additively to generate a full disease resistance response to P. syringae expressing this type III effector.
机译:由无毒力基因B(AvrB)编码的III型效应蛋白通过丁香假单胞菌的致病菌株传递到植物细胞中。在那里,它定位于质膜并触发由拟南芥卷曲螺旋(CC)-核苷酸结合(NB)-富亮氨酸重复序列(LRR)的疾病抵抗蛋白RPM1介导的免疫力。由无毒力基因Rpm1(AvrRpm1)编码的与序列无关的III型效应器无毒蛋白也激活RPM1。从敏感丁香叶中的丁香假单胞菌递送后,AvrB会增加毒力,而在拟南芥rpm1植物中,AvrRpm1也会发挥同样作用。 rpm1植物中AvrB的条件过表达导致叶片萎黄。在针对rpm1背景中缺乏依赖于AvrB的萎黄病的突变体的遗传筛选中,我们分离了TAO1(AvrB操作的靶标),其编码Toll-IL-1受体(TIR)-NB-LRR抗病蛋白。在rpm1植物中,TAO1功能导致发病相关蛋白1(PR-1)基因的表达,提示防御反应。在RPM1植物中,TAO1响应Pto(丁香假单胞菌番茄)DC3000(avrB)而增强抗病性,但不响应Pto DC3000(avrRpm1)。 tao1-5突变等位基因(TAO1的LRR域中的一个终止突变)在转录后抑制RPM1的积累。这些数据提供了拟南芥对AvrB和AvrRpm1的遗传分离的疾病抗性反应的证据。 AvrB激活CC-NB-LRR蛋白RPM1和TIR-NB-LRR蛋白TAO1。然后,这些NB-LRR蛋白加在一起发挥作用,对表达这种III型效应子的丁香假单胞菌产生完全的抗病性。

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