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首页> 外文期刊>Molecular Plant-Microbe Interactions >Transient Expression of Homologous Hairpin RNA Causes Interference with Plant Virus Infection and Is Overcome by a Virus Encoded Suppressor of Gene Silencing
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Transient Expression of Homologous Hairpin RNA Causes Interference with Plant Virus Infection and Is Overcome by a Virus Encoded Suppressor of Gene Silencing

机译:同源发夹RNA的瞬时表达导致植物病毒感染的干扰,由基因沉默的病毒编码抑制剂克服

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Specific post-transcriptional gene silencing (PTGS) of target genes can be induced in a variety of organisms by providing homologous double-stranded RNA (dsRNA) molecules. In plants, PTGS is part of a defense mechanism against virus infection. We have previously shown and patented that direct delivery to nontransgenic plants of dsRNA derived from viral sequences specifically interfere with virus infection. Here, we show that transient expression of constructs encoding hairpin RNA homologous to a rapidly replicating plant tobamovirus also interferes with virus multiplication in a sequence-dependent manner. A three-day lag period between delivery of hairpin RNA and virus into the same tissues completely block virus infectivity. Several hallmarks characteristic of PTGS were associated with viral interference mediated by hairpin RNA: high level of sequence identity between the hairpin RNA and the target RNA, presence of siRNAs in extracts derived from leaves infiltrated with hairpin RNA, and helper component-proteinase (HC-Pro) of potyviruses, a suppressor of PTGS, overcame interference. No evidence for a mobile silencing suppression signal induced by transient expression of HC-Pro was observed. The approach described here has the potential to be used as a versatile tool for studying the onset of PTGS in cases involving virus infection, in opposition to dsRNA-transgenic plants, which allow primarily for the study of PTGS maintenance.
机译:通过提供同源双链RNA(DSRNA)分子,可以在各种生物中诱导靶基因的特定转录后基因沉默(PTG)。在植物中,PTGS是对病毒感染的防御机制的一部分。我们之前已经表明和专利,直接递送给衍生自病毒序列的DSRNA的非转录植物,特别干扰病毒感染。在此,我们表明,编码发夹RNA与快速复制的植物烟草病毒同源的构建体的瞬时表达也以序列依赖性方式干扰病毒倍增。将发夹RNA和病毒递送到相同的组织之间的三天滞后时间完全阻断病毒感染性。 PTGs的几个标志性与发夹RNA介导的病毒干扰有关:发夹RNA和靶RNA之间的高水平序列同一性,衍生自发夹RNA渗透的叶子中的肠溶液中的siRNA(HC- pro)potviruses,ptgs的抑制器,克服干扰。未观察到通过HC-Pro的瞬时表达诱导的移动沉默抑制信号的证据。这里描述的方法具有用于研究涉及病毒感染的PTGS的发作的通用工具,其主要用于研究PTGS维持的研究。

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