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首页> 外文期刊>Genomics >Dual RNA-Seq analysis of Medicago truncatula and the pea powdery mildew Erysiphe pisi uncovers distinct host transcriptional signatures during incompatible and compatible interactions and pathogen effector candidates
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Dual RNA-Seq analysis of Medicago truncatula and the pea powdery mildew Erysiphe pisi uncovers distinct host transcriptional signatures during incompatible and compatible interactions and pathogen effector candidates

机译:Medicago Truncatula和Pea粉末状霉菌红细胞PISI的双RNA-SEQ分析在不相容和相容的相互作用和病原体效应子候选中揭示了不同的宿主转录签发

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Powdery mildew (PM) is a serious fungal disease of legumes. To gain novel insights into PM pathogenesis and host resistance/susceptibility, we used dual RNA-Seq to simultaneously capture host and pathogen transcriptomes at 1 d post-inoculation of resistant and susceptible Medicago truncatula genotypes with the PM Erysiphe pisi (Ep). Differential expression analysis indicates that R-gene mediated resistance against Ep involves extensive transcriptional reprogramming. Functional enrichment of differentially expressed host genes and in silico analysis of co-regulated promoters suggests that amplification of PTI, activation of the JA/ET signaling network, and regulation of growth-defense balance correlate with resistance. In contrast, processes that favor biotrophy, including suppression of defense signaling and programmed cell death, and weaker cell wall defenses are important susceptibility factors. Lastly, Ep effector candidates and genes with known/putative virulence functions were identified, representing a valuable resource that can be leveraged to improve our understanding of legume-PM interactions.
机译:粉状霉菌(PM)是一种严重的豆类真菌疾病。为了提高PM发病机制和宿主抗性/敏感性的新洞察,我们使用双RNA-SEQ同时捕获宿主和病原体转录om,其在接种与PM erysiphe PISI(EP)接种抗性和敏感的Medicago Truncatumaes的接种后。差异表达分析表明R-基因对EP的抗性涉及广泛的转录重编程。用于差异表达的宿主基因的功能性富集和共调节启动子的硅分析表明,扩增PTI,JA / ET信号通信网络的激活,并对生长防御平衡的调节与阻力相关。相反,有利于生物养学的过程,包括抑制防御信号和编程的细胞死亡以及较弱的细胞壁防御是重要的易感因素。最后,确定了EP效应候选人和具有已知/推定毒力职能的基因,代表了可以利用的宝贵资源,以改善我们对豆科PM互动的理解。

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