首页> 美国卫生研究院文献>Plant Physiology >The Potato MAP3K StVIK Is Required for the Phytophthora infestans RXLR Effector Pi17316 to Promote Disease
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The Potato MAP3K StVIK Is Required for the Phytophthora infestans RXLR Effector Pi17316 to Promote Disease

机译:马铃薯疫霉菌RXLR效应子Pi17316促进疾病需要马铃薯MAP3K StVIK

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摘要

Plant pathogens deliver effectors to manipulate processes in their hosts, creating a suitable environment for invasion and proliferation. Yet, little is known about the host proteins that are targeted by effectors from filamentous pathogens. Here, we show that stable transgenic expression in potato (Solanum tuberosum) and transient expression in Nicotiana benthamiana of the arginine-any amino acid-leucine-arginine effector Pi17316 enhances leaf colonization by the late blight pathogen Phytophthora infestans. Expression of Pi17316 also attenuates cell death triggered by the pathogen-associated molecular pattern Infestin1 (INF1), indicating that the effector suppresses pattern-triggered immunity. However, this effector does not attenuate cell death triggered by a range of resistance proteins, showing that it specifically suppresses INF1-triggered cell death (ICD). In yeast two-hybrid assays, Pi17316 interacts directly with the potato ortholog of VASCULAR HIGHWAY1-interacting kinase (StVIK), encoding a predicted MEK kinase (MAP3K). Interaction in planta was confirmed by coimmunoprecipitation and occurs at the plant plasma membrane. Virus-induced gene silencing of VIK in N. benthamiana attenuated P. infestans colonization, whereas transient overexpression of StVIK enhanced colonization, indicating that this host protein acts as a susceptibility factor. Moreover, VIK overexpression specifically attenuated ICD, indicating that it is a negative regulator of immunity. The abilities of Pi17316 to enhance P. infestans colonization or suppress ICD were compromised significantly in NbVIK-silenced plants, demonstrating that the effector activity of Pi17316 is mediated by this MAP3K. Thus, StVIK is exploited by P. infestans as a susceptibility factor to promote late blight disease.
机译:植物病原体通过传递效应子来操纵宿主中的过程,从而为入侵和增殖创造了合适的环境。然而,关于丝状病原体的效应子靶向的宿主蛋白的了解甚少。在这里,我们显示稳定的转基因表达在马铃薯(Solanum tuberosum)中的瞬时表达和在本氏烟草中的精氨酸-任何氨基酸-亮氨酸-精氨酸效应子Pi17316的瞬时表达均增强了晚疫病病原疫霉疫霉的叶片定殖。 Pi17316的表达还减弱了病原体相关分子模式Infestin1(INF1)触发的细胞死亡,表明该效应子抑制了模式触发的免疫力。但是,该效应子不能减弱由一系列抗性蛋白触发的细胞死亡,表明它可以特异性抑制INF1触发的细胞死亡(ICD)。在酵母双杂交检测中,Pi17316与马铃薯直系同源蛋白VASCULAR HIGHWAY1相互作用激酶(StVIK)直接相互作用,编码预测的MEK激酶(MAP3K)。通过共免疫沉淀证实了植物体内的相互作用,并在植物质膜上发生。病毒在本氏烟草中诱导的VIK基因沉默减弱了疫霉菌的定殖,而StVIK的瞬时过表达增强了定殖,表明该宿主蛋白是易感性因子。此外,VIK的过表达特异性减弱了ICD,表明它是免疫力的负调节剂。在NbVIK沉默的植物中,Pi17316增强致病疫霉菌定殖或抑制ICD的能力显着降低,表明Pi17316的效应子活性是由MAP3K介导的。因此,StVIK被致病性疟原虫利用作为促进晚疫病的易感性因子。

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