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首页> 外文期刊>The Plant Cell >RNA-Dependent RNA Polymerase 1 from Nicotiana tabacum Suppresses RNA Silencing and Enhances Viral Infection in Nicotiana benthamiana
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RNA-Dependent RNA Polymerase 1 from Nicotiana tabacum Suppresses RNA Silencing and Enhances Viral Infection in Nicotiana benthamiana

机译:烟草的RNA依赖性RNA聚合酶1抑制烟草沉默并增强病毒在本氏烟草中的感染。

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摘要

Endogenous eukaryotic RNA-dependent RNA polymerases (RDRs) produce double-stranded RNA intermediates in diverse processes of small RNA synthesis in RNA silencing pathways. RDR6 is required in plants for posttranscriptional gene silencing induced by sense transgenes (S-PTGS) and has an important role in amplification of antiviral silencing. Whereas RDR1 is also involved in antiviral defense in plants, this does not necessarily proceed through triggering silencing. In this study, we show that Nicotiana benthamiana transformed with RDR1 from Nicotiana tabacum (Nt-RDR1 plants) exhibits hypersusceptibility to Plum pox potyvirus and other viruses, resembling RDR6-silenced (RDR6i) N. benthamiana. Analysis of transient induction of RNA silencing in N. benthamiana Nt-RDR1 and RDR6i plants revealed that Nt-RDR1 possesses silencing suppression activity. We found that Nt-RDR1 does not interfere with RDR6-dependent siRNA accumulation but turns out to suppress RDR6-dependent S-PTGS. Our results, together with previously published data, suggest that RDR1 might have a dual role, contributing, on one hand, to salicylic acid-mediated antiviral defense, and suppressing, on the other hand, the RDR6-mediated antiviral RNA silencing. We propose a scenario in which the natural loss-of-function variant of RDR1 in N. benthamiana may be the outcome of selective pressure to maintain a high RDR6-dependent antiviral defense, which would be required to face the hypersensitivity of this plant to a large number of viruses.
机译:内源性真核RNA依赖性RNA聚合酶(RDR)在RNA沉默途径中的小RNA合成的各种过程中产生双链RNA中间体。 RDR6在植物中是由有义转基因(S-PTGS)诱导的转录后基因沉默所必需的,并且在抗病毒沉默的扩增中具有重要作用。尽管RDR1也参与植物的抗病毒防御,但这并不一定通过触发沉默来进行。在这项研究中,我们显示了用来自烟草(Nt-RDR1植物)的RDR1转化的本氏烟草表现出对李子痘病毒和其他病毒的高度敏感性,类似于RDR6-沉默的(RDR6i)本氏烟草。本氏烟草Nt-RDR1和RDR6i植物中RNA沉默的瞬时诱导分析表明,Nt-RDR1具有沉默抑制活性。我们发现,Nt-RDR1不会干扰RDR6依赖性siRNA的积累,但可以抑制RDR6依赖性S-PTGS。我们的研究结果以及以前发表的数据表明,RDR1可能具有双重作用,一方面有助于水杨酸介导的抗病毒防御,另一方面可以抑制RDR6介导的抗病毒RNA沉默。我们提出了一种方案,其中本氏烟草中RDR1的天然功能丧失变异可能是维持高RDR6依赖性抗病毒防御能力的选择性压力的结果,而这是面对这种植物对植物过敏的原因。大量病毒。

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