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Identification of Nicotiana benthamiana Genes Involved in Pathogen-Associated Molecular Pattern–Triggered Immunity

机译:与病原相关的分子模式触发的免疫相关的本生烟草基因的鉴定。

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In order to identify components of pathogen-associated molecular pattern–triggered immunity (PTI) pathways in Nicotiana benthamiana, we conducted a large-scale forward-genetics screen using virus-induced gene silencing and a cell-death-based assay for assessing PTI. The assay relied on four combinations of PTI-inducing nonpathogens and cell-death-causing challenger pathogens and was first validated in plants silenced for FLS2 or BAK1. Over 3,200 genes were screened and 14 genes were identified that, when silenced, compromised PTI as judged by the cell-death-based assay. Further analysis indicated that the 14 genes were not involved in a general cell death response. A subset of the genes was found to act downstream of FLS2-mediated PTI induction, and silencing of three genes compromised production of reactive oxygen species in leaves exposed to flg22. The 14 genes encode proteins with potential functions in defense and hormone signaling, protein stability and degradation, energy and secondary metabolism, and cell wall biosynthesis and provide a new resource to explore the molecular basis for the involvement of these processes in PTI.
机译:为了鉴定本氏烟草中病原体相关分子模式触发的免疫(PTI)途径的组成部分,我们进行了大规模前向遗传学筛选,使用病毒诱导的基因沉默和基于细胞死亡的测定方法评估PTI。该测定方法依赖于诱导PTI的非病原体和引起细胞死亡的攻击者病原体的四种组合,并且首先在沉默了FLS2或BAK1的植物中进行了验证。筛选了3200多个基因,并鉴定了14个基因,这些基因沉默后,通过基于细胞死亡的分析判断为PTI受损。进一步的分析表明,这14个基因不参与一般的细胞死亡反应。发现该基因的一个子集在FLS2介导的PTI诱导的下游起作用,而三个基因的沉默破坏了暴露于flg22的叶片中活性氧的产生。这14个基因编码在防御和激素信号传导,蛋白质稳定性和降解,能量和次级代谢以及细胞壁生物合成中具有潜在功能的蛋白质,并提供了新的资源来探索这些过程参与PTI的分子基础。

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