首页> 外文期刊>Molecular Plant-Microbe Interactions >Mutations in the Pseudomonas syringae avrRpt2 gene That Dissociate Its Virulence and Avirulence Activities Lead to Decreased Efficiency in AvrRpt2-Induced Disappearance of RIN4
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Mutations in the Pseudomonas syringae avrRpt2 gene That Dissociate Its Virulence and Avirulence Activities Lead to Decreased Efficiency in AvrRpt2-Induced Disappearance of RIN4

机译:丁香假单胞菌avrRpt2基因中的突变会解离其毒力和无毒活性,导致AvrRpt2引起的RIN4消失效率降低。

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The avrRpt2 gene from Pseudomonas syringae pv. tomato exhibits avirulence activity on Arabidopsis expressing the resistance gene RPS2 but promotes bacterial virulence on susceptible rps2 Arabidopsis . To understand the functional relationship between the avirulence and virulence activities of avrRpt2 , we analyzed a series of six avrRpt2 mutants deficient in eliciting the RPS2 -dependent hypersensitive response. We show that the mutants are also severely impaired in triggering RSP2 -dependent resistance. Four of these mutants are severely impaired in their virulence activity, whereas two alleles, encoding C-terminal deletions of AvrRpt2, retain significant but slightly reduced virulence activity. Thus, the avirulence and virulence activities of avrRpt2 can be genetically uncoupled. We tested the ability of the two C-terminal deletion mutants to trigger AvrRpt2-induced elimination of the Arabidopsis RIN4 protein and show that they retain this activity but are less efficient than wild-type AvrRpt2. Thus, reduced AvrRpt2 virulence activity is correlated with reduced efficiency in the induction of RIN4 disappearance. This suggests that an alteration in kinetics of RIN4 disappearance triggered by the C-terminal deletion mutants may provide the mechanistic basis for the uncoupling of the avirulence and virulence activities of avrRpt2 .
机译:丁香假单胞菌pv的avrRpt2基因。番茄对表达抗性基因RPS2的拟南芥表现出无毒活性,但对易感的rps2拟南芥却增强了细菌的致病性。为了了解avrRpt2的无毒力与毒力活性之间的功能关系,我们分析了一系列六个缺乏引起RPS2依赖性超敏反应的avrRpt2突变体。我们显示该突变体在触发RSP2依赖性耐药中也受到严重损害。这些突变体中的四个突变体的毒力活性严重受损,而编码AvrRpt2 C端缺失的两个等位基因则保留了显着但略有降低的毒力活性。因此,avrRpt2的无毒力和毒力活动可以遗传脱钩。我们测试了两个C端缺失突变体触发AvrRpt2诱导的拟南芥RIN4蛋白消除的能力,并显示它们保留了此活性,但效率不如野生型AvrRpt2。因此,降低的AvrRpt2毒力活性与诱导RIN4消失的效率降低相关。这表明由C端缺失突变体触发的RIN4消失动力学的改变可能为avrRpt2的无毒力和毒力活动的解耦提供了机械基础。

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