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首页> 外文期刊>BMC Genomics >Discovery and characterization of the evolution, variation and functions of diversity-generating retroelements using thousands of genomes and metagenomes
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Discovery and characterization of the evolution, variation and functions of diversity-generating retroelements using thousands of genomes and metagenomes

机译:使用数千种基因组和偏心蛋白的多样性产生逆压力的演化,变化和功能的发现和表征

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摘要

Diversity-generating retroelements (DGRs) are a unique family of retroelements that generate sequence diversity of DNA to benefit their hosts by introducing variations and accelerating the evolution of target proteins. They exist widely in bacteria, archaea, phage and plasmid. However, our understanding about DGRs in natural environments was still very limited. We developed an efficient computational algorithm to identify DGRs, and applied it to characterize DGRs in more than 80,000 sequenced bacterial genomes as well as more than 4,000 human metagenome datasets. In total, we identified 948 non-redundant DGRs, which expanded the number of known DGRs in bacterial genomes and human microbiomes by about 55%, and provided a much more comprehensive reference for the study of DGRs. Phylogenetic analysis was done for identified DGRs. The putative target genes of DGRs were searched, and the functions of these target genes were investigated with a comprehensive alignment against the nr database. DGR system is a powerful and universal mechanism to generate diversity. DGR evolution is closely associated with the living environment and their cassette structures. Furthermore, it may impact a wide range of functional processes in addition to receptor-binding. These results significantly improved our understanding about DGRs.
机译:多样性产生的逆向(DGR)是一种独特的逆机系列,通过引入靶蛋白的变化和加速靶蛋白的演变来产生DNA的序列多样性以使其宿主受益。它们存在于细菌,古痤疮,噬菌体和质粒中的广泛存在。但是,我们对自然环境中的DGRS的理解仍然非常有限。我们开发了一种有效的计算算法来识别DGR,并将其应用于超过80,000个测序的细菌基因组以及超过4,000个人梅塔群数据集的DGR。总共确定了948个非冗余DGR,其将已知DGR的数量扩大到细菌基因组和人微生物体中的约55%,为DGRS的研究提供了更全面的参考。为鉴定的DGRS进行系统发育分析。搜索DGR的推定靶基因,并通过针对NR数据库的综合对准来研究这些靶基因的功能。 DGR系统是一种强大而普遍的机制来产生多样性。 DGR演变与生活环境及其盒式结构密切相关。此外,除了受体结合之外,它可能会影响各种功能过程。这些结果显着提高了对DGRS的理解。

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