病毒诱导基因沉默,一种转录后基因沉默方法。

International journal of plant genomics Pub Date : 2009-01-01 Epub Date: 2009-06-15 DOI:10.1155/2009/198680
Turgay Unver, Hikmet Budak
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引用次数: 82

摘要

病毒诱导基因沉默(VIGS)是一种用于基因功能分析的反向遗传学工具,它利用携带目标基因片段的病毒载体产生触发rna介导的基因沉默的dsRNA。有许多病毒已被修饰,以序列特异性的方式有效地沉默感兴趣的基因。因此,不同类型的方法已被提出和修改为VIGS方法。病毒衍生的接种采用不同的方法,如农业渗透和体外转录在寄主植物上进行。与其他基因功能缺失方法相比,VIGS具有许多优势。该方法提供了快速表型的产生,不需要植株转化。VIGS实验成本相对较低,可实现筛选研究的大规模分析。然而,VIGS仍有一些局限性需要克服。目前,许多病毒衍生载体被优化为沉默多个寄主植物,如trv衍生的病毒载体,用于拟南芥和本拟南芥。通过病毒沉默系统的开发,除了双子叶植物外,单子叶植物也可以作为沉默宿主。例如,大麦条纹花叶病毒(BSMV)介导的VIGS允许大麦和小麦基因沉默。在这里,我们总结了目前的协议和最近修改的病毒系统,导致基因沉默在不同的宿主物种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Virus-induced gene silencing, a post transcriptional gene silencing method.

Virus-induced gene silencing (VIGS) is one of the reverse genetics tools for analysis of gene function that uses viral vectors carrying a target gene fragment to produce dsRNA which trigger RNA-mediated gene silencing. There are a number of viruses which have been modified to silence the gene of interest effectively with a sequence-specific manner. Therefore, different types of methodologies have been advanced and modified for VIGS approach. Virus-derived inoculations are performed on host plants using different methods such as agro-infiltration and in vitro transcriptions. VIGS has many advantages compared to other loss-of-gene function approaches. The approach provides the generation of rapid phenotype and no need for plant transformation. The cost of VIGS experiment is relatively low, and large-scale analysis of screening studies can be achieved by the VIGS. However, there are still limitations of VIGS to be overcome. Nowadays, many virus-derived vectors are optimized to silence more than one host plant such as TRV-derived viral vectors which are used for Arabidopsis and Nicothiana benthamiana. By development of viral silencing systems monocot plants can also be targeted as silencing host in addition to dicotyledonous plants. For instance, Barley stripe mosaic virus (BSMV)-mediated VIGS allows silencing of barley and wheat genes. Here we summarize current protocols and recent modified viral systems to lead silencing of genes in different host species.

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