拟南芥WRR4A和WRR4B同源NLR蛋白都能识别多种白蛋白

A. Redkar, V. Cevik, Kate Bailey, He Zhao, Daesung Kim, Zhou Zou, Oliver J. Furzer, Sebastian Fairhead, M. H. Borhan, E. Holub, Jonathan D. G. Jones
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引用次数: 9

摘要

白念珠菌引起白疱锈病,是芸苔属作物的重要病害。不同的假丝酵母菌是由它们感染不同宿主物种的特异性来定义的。拟南芥抗白锈病4 (WRR4)基因座包含3个编码TIR-NLR抗性蛋白的基因。WRR4A和WRR4B的Col-0等位基因对至少4个候选单胞菌小种(分别来自juncea、B. rapa和B.甘蓝的2、7和9,以及来自荠菜的4)具有抗性。由这两种相似物介导的抗性可以被4号种的col0毒性分离株克服。在比较抗性菌株和破抗性菌株候选效应物的谱库后,我们利用烟草或拟南芥中的瞬时共表达来鉴定WRR4A和WRR4B识别的效应物。从四个候选A种中筛选CCG效应物库,以检测WRR4A-或WRR4B-依赖性的超敏反应(hypersensitive response, HR)。在野生型Col-0、wrr4A或wrr4B突变体中,通过轰击实验验证了这些CCG基因是否具有wrr依赖性HR。我们的分析发现了8个wrr4a识别的ccg和4个wrr4a识别的ccg。值得注意的是,分泌信号后100个氨基酸的n端区域足以让WRR4A识别这8种被识别的效应物。这种多重识别能力可能解释了WRR4类似物对许多候选假丝酵母菌的广谱抗性。
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The Arabidopsis WRR4A and WRR4B paralogous NLR proteins both confer recognition of multiple Albugo candida effectors
The oomycete Albugo candida causes white blister rust, an important disease of Brassica crops. Distinct races of A. candida are defined by their specificity for infecting different host species. The White Rust Resistance 4 (WRR4) locus in Col-0 accession of Arabidopsis thaliana contains three genes that encode TIR-NLR resistance proteins. The Col-0 alleles of WRR4A and WRR4B confer resistance to at least four A. candida races (2, 7 and 9 from B. juncea, B. rapa and B. oleracea, respectively, and Race 4 from Capsella bursa-pastoris). Resistance mediated by both paralogs can be overcome by Col-0-virulent isolates of Race 4. After comparing repertoires of candidate effectors in resisted and resistance-breaking strains, we used transient co-expression in tobacco or Arabidopsis to identify effectors recognized by WRR4A and WRR4B. A library of CCG effectors from four A. candida races was screened for WRR4A- or WRR4B- dependent elicitation of hypersensitive response (HR). These CCG genes were validated for WRR-dependent HR by bombardment assays in wild type Col-0, wrr4A or wrr4B mutants. Our analysis revealed eight WRR4A-recognized CCGs and four WRR4B-recognized CCGs. Remarkably, the N-terminal region of 100 amino acids after the secretion signal is sufficient for WRR4A recognition of these eight recognized effectors. This multiple recognition capacity potentially explains the broad-spectrum resistance to many A. candida races conferred by WRR4 paralogs.
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