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Large-scale network analysis captures biological features of bacterial plasmids

机译:大规模网络分析捕获细菌质粒的生物学特征

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Many bacteria can exchange genetic material through horizontal gene transfer (HGT) mediated by plasmids and plasmid-borne transposable elements. Here, we study the population structure and dynamics of over 10,000 bacterial plasmids, by quantifying their genetic similarities and reconstructing a network based on their shared k-mer content. We use a community detection algorithm to assign plasmids into cliques, which correlate with plasmid gene content, bacterial host range, GC content, and existing classifications based on replicon and mobility (MOB) types. Further analysis of plasmid population structure allows us to uncover candidates for yet undescribed replicon genes, and to identify transposable elements as the main drivers of HGT at broad phylogenetic scales. Our work illustrates the potential of network-based analyses of the bacterial 'mobilome' and opens up the prospect of a natural, exhaustive classification framework for bacterial plasmids.
机译:许多细菌可以通过质粒介导的水平基因转移(HGT)交换遗传物质和质粒转发元件。在这里,我们通过量化其遗传相似性并根据其共享K-MER内容进行重建网络来研究超过10,000种细菌质粒的人口结构和动态。我们使用群落检测算法将质粒分配成群体,其与质粒基因含量,细菌宿主范围,GC含量和基于复制品(MOB)类型的现有分类相关。对质粒群体结构的进一步分析使我们能够揭示尚未描述的复制子基因的候选物,并鉴定在宽系统发育尺度的HGT的主要驱动器中的转发元件。我们的工作说明了细菌“流氓”网络的基于网络分析的潜力,并开辟了对细菌质粒的自然,详尽的分类骨架的前景。

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