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Integrative and conjugative elements and their hosts: composition, distribution and organization

机译:综合和共聚元素及其主持人:组成,分配和组织

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Conjugation of single-stranded DNA drives horizontal gene transfer between bacteria and was widely studied in conjugative plasmids. The organization and function of integrative and conjugative elements (ICE), even if they are more abundant, was only studied in a few model systems. Comparative genomics of ICE has been precluded by the difficulty in finding and delimiting these elements. Here, we present the results of a method that circumvents these problems by requiring only the identification of the conjugation genes and the species' pan-genome. We delimited 200 ICEs and this allowed the first large-scale characterization of these elements. We quantified the presence in ICEs of a wide set of functions associated with the biology of mobile genetic elements, including some that are typically associated with plasmids, such as partition and replication. Protein sequence similarity networks and phylogenetic analyses revealed that ICEs are structured in functional modules. Integrases and conjugation systems have different evolutionary histories, even if the gene repertoires of ICEs can be grouped in function of conjugation types. Our characterization of the composition and organization of ICEs paves the way for future functional and evolutionary analyses of their cargo genes, composed of a majority of unknown function genes.
机译:单链DNA的缀合驱动细菌之间的水平基因转移,并在共轭质粒中广泛研究。综合和共轭元素(冰)的组织和功能,即使它们更加丰富,才会在一些模型系统中进行。冰比较基因组学被难以发现和划定这些元素。这里,我们介绍了一种通过仅需要鉴定缀合基因和物种泛基因组来缩短这些问题的方法的结果。我们分隔200克斯,这允许这些元素的第一次大规模表征。我们量化了与流动遗传元素生物学相关的各种功能的谢谢的存在,包括一些通常与质粒相关的函数,例如分区和复制。蛋白质序列相似性网络和系统发育分析显示,ICES在功能模块中构成。即使可以在缀合类型的功能中可以分组,积分和共轭系统也具有不同的进化历史。我们对谢谢的组成和组织的表征为其货物基因的未来功能和进化分析铺平了途径,这些方法由大多数未知的功能基因组成。

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