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Large-Scale Analysis of Plasmid Relationships through Gene-Sharing Networks

机译:通过基因共享网络的质粒关系的大规模分析

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摘要

Plasmids are vessels of genetic exchange in microbial communities. They are known to transfer between different host organisms and acquire diverse genetic elements from chromosomes and/or other plasmids. Therefore, they constitute an important element in microbial evolution by rapidly disseminating various genetic properties among different communities. A paradigmatic example of this is the dissemination of antibiotic resistance (AR) genes that has resulted in the emergence of multiresistant pathogenic bacterial strains. To globally analyze the evolutionary dynamics of plasmids, we built a large graph in which 2,343 plasmids (nodes) are connected according to the proteins shared by each other. The analysis of this gene-sharing network revealed an overall coherence between network clustering and the phylogenetic classes of the corresponding microorganisms, likely resulting from genetic barriers to horizontal gene transfer between distant phylogenetic groups. Habitat was not a crucial factor in clustering as plasmids from organisms inhabiting different environments were often found embedded in the same cluster. Analyses of network metrics revealed a statistically significant correlation between plasmid mobility and their centrality within the network, providing support to the observation that mobile plasmids are particularly important in spreading genes in microbial communities. Finally, our study reveals an extensive (and previously undescribed) sharing of AR genes between Actinobacteria and Gammaproteobacteria, suggesting that the former might represent an important reservoir of AR genes for the latter.
机译:质粒是微生物群落中遗传交换的容器。已知它们在不同宿主生物之间转移,并从染色体和/或其他质粒中获得多种遗传元件。因此,它们通过在不同群落之间快速传播各种遗传特性而构成微生物进化的重要元素。一个典型的例子是传播抗生素抗性(AR)基因,导致出现多抗性病原细菌菌株。为了全局分析质粒的进化动力学,我们建立了一个大图,其中根据彼此共享的蛋白质连接了2,343个质粒(节点)。对这种基因共享网络的分析表明,网络聚类和相应微生物的系统发生类别之间总体上具有一致性,这很可能是由于远距离系统发生群之间水平基因转移的遗传障碍所致。生境不是聚类的关键因素,因为经常发现来自居住在不同环境中的生物的质粒被嵌入同一聚类中。对网络指标的分析表明,质粒的迁移率与其在网络中的中心地位之间存在统计学上的显着相关性,这为以下观察提供了支持:流动质粒对于在微生物群落中传播基因特别重要。最后,我们的研究揭示了放线杆菌和γ-变形细菌之间AR基因的广泛共享(以前没有描述),这表明前者可能代表后者的重要AR基因库。

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