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对微生物群落双链RNA的分析鉴定出双链RNA病毒样元件。

Analysis of double-stranded RNA from microbial communities identifies double-stranded RNA virus-like elements.

作者信息

Decker Carolyn J, Parker Roy

机构信息

Department of Chemistry and Biochemistry and Howard Hughes Medical Institute, University of Colorado, Boulder, CO 80303, USA.

Department of Chemistry and Biochemistry and Howard Hughes Medical Institute, University of Colorado, Boulder, CO 80303, USA.

出版信息

Cell Rep. 2014 May 8;7(3):898-906. doi: 10.1016/j.celrep.2014.03.049. Epub 2014 Apr 24.

Abstract

Double-stranded RNA (dsRNA) can function as genetic information and may have served as genomic material before the existence of DNA-based life. By developing a method to purify dsRNA, we have investigated the diversity of dsRNA in microbial populations. We detect large dsRNAs in multiple microbial populations. Analysis of an aquatic microbial population reveals that some dsRNA sequences match metagenomic DNA, suggesting that microbes contain pools of sense-antisense transcripts. In addition, ∼30% of the dsRNA sequences are not present in the corresponding DNA pool and are strongly biased toward encoding novel proteins. Of these "dsRNA unique" sequences, only a small percentage share similarity to known viruses, a large fraction assemble into RNA virus-like contigs, and the remaining fraction has an unexplained origin. These results have uncovered dsRNA virus-like elements and underscore that dsRNA potentially represents an additional reservoir of genetic information in microbial populations.

摘要

双链RNA(dsRNA)可作为遗传信息发挥作用,并且在基于DNA的生命出现之前可能曾作为基因组物质。通过开发一种纯化dsRNA的方法,我们研究了微生物群体中dsRNA的多样性。我们在多个微生物群体中检测到了大型dsRNA。对一个水生微生物群体的分析表明,一些dsRNA序列与宏基因组DNA匹配,这表明微生物含有有义-反义转录本库。此外,约30%的dsRNA序列在相应的DNA库中不存在,并且强烈倾向于编码新蛋白质。在这些“dsRNA独特”序列中,只有一小部分与已知病毒具有相似性,一大部分组装成RNA病毒样重叠群,其余部分来源不明。这些结果揭示了dsRNA病毒样元件,并强调dsRNA可能代表微生物群体中遗传信息的另一个储存库。

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