首页> 美国卫生研究院文献>Plant Physiology >Focus Issue on Virus-Plant Cell Interaction: An RNA-Dependent RNA Polymerase Prevents Meristem Invasion by Potato Virus X and Is Required for the Activity But Not the Production of a Systemic Silencing Signal
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Focus Issue on Virus-Plant Cell Interaction: An RNA-Dependent RNA Polymerase Prevents Meristem Invasion by Potato Virus X and Is Required for the Activity But Not the Production of a Systemic Silencing Signal

机译:病毒-植物细胞相互作用的焦点问题:RNA依赖的RNA聚合酶可防止马铃薯X病毒侵染血红蛋白是活动所必需的但不会产生系统性沉默信号

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摘要

One of the functions of RNA silencing in plants is antiviral defense. A hallmark of RNA silencing is spreading of the silenced state through the plant. Little is known about the nature of the systemic silencing signal and the proteins required for its production, transport, and reception in plant tissues. Here, we show that the RNA-dependent RNA polymerase RDR6 in Nicotiana benthamiana is involved in defense against potato virus X at the level of systemic spreading and in exclusion of the virus from the apical growing point. It has no effect on primary replication and cell-to-cell movement of the virus and does not contribute significantly to the formation of virus-derived small interfering (si) RNA in a fully established potato virus X infection. In grafting experiments, the RDR6 homolog was required for the ability of a cell to respond to, but not to produce or translocate, the systemic silencing signal. Taking these findings together, we suggest a model of virus defense in which RDR6 uses incoming silencing signal to generate double-stranded RNA precursors of secondary siRNA. According to this idea, the secondary siRNAs mediate RNA silencing as an immediate response that slows down the systemic spreading of the virus into the growing point and newly emerging leaves.
机译:植物中RNA沉默的功能之一是抗病毒防御。 RNA沉默的标志是沉默状态在植物中的传播。对于系统沉默信号的性质以及在植物组织中产生,运输和接收所需的蛋白质知之甚少。在这里,我们显示了本氏烟草中的RNA依赖性RNA聚合酶RDR6在系统扩散的水平上参与了对马铃薯X病毒的防御,并且从根尖生长点排除了该病毒。它对病毒的初次复制和细胞间移动没有影响,并且在完全确定的马铃薯X病毒感染中,对病毒衍生的小干扰RNA的形成没有显着贡献。在嫁接实验中,RDR6同源物是细胞响应但不产生或转运系统沉默信号的能力所必需的。综合这些发现,我们提出了一种病毒防御模型,其中RDR6使用传入的沉默信号来生成次级siRNA的双链RNA前体。根据这一想法,次级siRNA介导RNA沉默作为立即反应,从而减慢了病毒在生长点和新近出现的叶片中的系统性传播。

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