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Deep-sequencing of plant viral small RNAs reveals effective and widespread targeting of viral genomes.

机译:植物病毒小RNA的深测序揭示了有效而广泛地靶向病毒基因组。

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Plant virus infection involves the production of viral small RNAs (vsRNAs) with the potential to associate with distinct Argonaute (AGO)-containing silencing complexes and mediate diverse silencing effects on RNA and chromatin. We used multiplexed, high-throughput pyrosequencing to profile populations of vsRNAs from plants infected with viruses from different genera. Sense and antisense vsRNAs of 20 to 24 nucleotides (nts) spread throughout the entire viral genomes in an overlapping configuration; virtually all genomic nucleotide positions were represented in the data set. We present evidence to suggest that every genomic position could be a putative cleavage site for vsRNA formation, although viral genomes contain specific regions that serve as preferential sources of vsRNA production. Hotspots for vsRNAs of 21-, 22-, and 24-nt usually coincide in the same genomic regions, indicating similar target affinities among Dicer-like (DCL) enzymes. In the light of our results, the overall contribution of perfectly base paired double-stranded RNA and imperfectly base paired structures within single-stranded RNA to vsRNA formation is discussed. Our census of vsRNAs extends the current view of the distribution and composition of vsRNAs in virus-infected plants, and contributes to a better understanding of vsRNA biogenesis.
机译:植物病毒感染涉及病毒小RNA(vsRNA)的生产,该病毒有可能与不同的含Argonaute(AGO)的沉默复合物缔合,并介导对RNA和染色质的多种沉默作用。我们使用多重,高通量焦磷酸测序对来自不同属病毒感染的植物中vsRNA的种群进行概况分析。 20至24个核苷酸(nt)的有义和反义vsRNA以重叠构型分布在整个病毒基因组中。实际上,所有基因组核苷酸位置都在数据集中表示。我们提供的证据表明,每个基因组位置都可能是vsRNA形成的假定切割位点,尽管病毒基因组包含特定区域,可作为vsRNA生产的优先来源。 21-,22-和24-nt的vsRNA的热点通常在同一基因组区域内重合,表明Dicer样(DCL)酶之间的靶亲和力相似。根据我们的结果,讨论了完美碱基配对的双链RNA和单链RNA中不完全碱基配对的结构对vsRNA形成的总体贡献。我们对vsRNA的普查扩展了当前对被病毒感染的植物中vsRNA的分布和组成的看法,并有助于更好地了解vsRNA的生物发生。

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