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首页> 外文期刊>Plant signaling & behavior >RIN4-like proteins mediate resistance protein-derived soybean defense against Pseudomonas syringae.
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RIN4-like proteins mediate resistance protein-derived soybean defense against Pseudomonas syringae.

机译:RIN4样蛋白介导抗丁香假单胞菌抗性蛋白衍生的大豆防御。

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Resistance (R) protein mediated recognition of pathogen avirulence effectors triggers signaling that induces a very robust form of species-specific immunity in plants. The soybean Rpg1-b protein mediates this form of resistance against the bacterial blight pathogen, Pseudomonas syringae expressing AvrBPgyrace4. Likewise, the Arabidopsis RPM1 protein also mediates species-specific resistance against AvrB expressing bacteria. RPM1 and Rpg1-b are non-orthologous and differ in their requirements for downstream signaling components. We recently showed that the activation of Rpg1-b derived resistance signaling requires two host proteins that directly interact with AvrB. These proteins share high sequence similarity with the Arabidopsis RPM1 interacting protein 4 (RIN4), which is essential for RPM1-derived resistance. The two soybean RIN4-like proteins (GmRIN4a and b) differ in their abilities to interact with Rpg1-b as well as to complement the Arabidopsis rin4 mutation. Because the two GmRIN4 proteins interact with each other, we proposed that they might function as a heteromeric complex in mediating Rpg1-b-derived resistance. Absence of GmRIN4a or b enhanced basal resistance against bacterial and oomycete pathogens in soybean. Lack of GmRIN4a also enhanced the virulence of avrB bacteria in plants lacking Rpg1-b. Our studies suggest that multiple RIN4-like proteins mediate R-mediated signaling, in soybean.
机译:抗性(R)蛋白质介导的病原体无毒力效应因子的识别触发信号传导,从而诱导植物中非常强大的物种特异性免疫形式。大豆Rpg1-b蛋白介导了对表达AvrB Pgyrace4 的细菌性疫病病原体丁香假单胞菌的抗性。同样,拟南芥RPM1蛋白也介导了针对表达AvrB的细菌的物种特异性抗性。 RPM1和Rpg1-b是非直系的,并且对下游信令组件的要求不同。我们最近显示,Rpg1-b衍生的抗性信号转导的激活需要两个直接与AvrB相互作用的宿主蛋白。这些蛋白质与拟南芥RPM1相互作用蛋白4(RIN4)具有高度的序列相似性,这对于RPM1衍生的抗性至关重要。两种大豆RIN4样蛋白(GmRIN4a和b)在与Rpg1-b相互作用以及补充拟南芥 rin4 突变方面的能力不同。因为这两个GmRIN4蛋白彼此相互作用,所以我们建议它们可能在介导Rpg1-b衍生的抗性中作为异源复合物起作用。 GmRIN4a或b的缺乏增强了大豆对细菌和卵菌病原体的基础抗性。 GmRIN4a的缺乏还增强了缺乏Rpg1-b的植物中 avrB 细菌的毒性。我们的研究表明,大豆中多种RIN4样蛋白可介导R介导的信号传导。

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