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首页> 外文期刊>Genome Biology and Evolution >The repABC Plasmids with Quorum-Regulated Transfer Systems in Members of the Rhizobiales Divide into Two Structurally and Separately Evolving Groups
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The repABC Plasmids with Quorum-Regulated Transfer Systems in Members of the Rhizobiales Divide into Two Structurally and Separately Evolving Groups

机译:带有根瘤菌成员的染色体调控转移系统的repABC质粒分为两个结构和单独进化的群体

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The large repABC plasmids of the order Rhizobiales with Class I quorum-regulated conjugative transfer systems often define the nature of the bacterium that harbors them. These otherwise diverse plasmids contain a core of highly conserved genes for replication and conjugation raising the question of their evolutionary relationships. In an analysis of 18 such plasmids these elements fall into two organizational classes, Group I and Group II, based on the sites at which cargo DNA is located. Cladograms constructed from proteins of the transfer and quorum-sensing components indicated that those of the Group I plasmids, while coevolving, have diverged from those coevolving proteins of the Group II plasmids. Moreover, within these groups the phylogenies of the proteins usually occupy similar, if not identical, tree topologies. Remarkably, such relationships were not seen among proteins of the replication system; although RepA and RepB coevolve, RepC does not. Nor do the replication proteins coevolve with the proteins of the transfer and quorum-sensing systems. Functional analysis was mostly consistent with phylogenies. TraR activated promoters from plasmids within its group, but not between groups and dimerized with TraR proteins from within but not between groups. However, oriT sequences, which are highly conserved, were processed by the transfer system of plasmids regardless of group. We conclude that these plasmids diverged into two classes based on the locations at which cargo DNA is inserted, that the quorum-sensing and transfer functions are coevolving within but not between the two groups, and that this divergent evolution extends to function.
机译:根瘤菌一类的大的repABC质粒具有I类群体调控的结合转移系统,通常定义了携带它们的细菌的性质。这些原本不同的质粒包含高度保守的基因核心,用于复制和结合,引发了它们进化关系的问题。在对18种此类质粒的分析中,根据货物DNA的位置,这些元素分为两个组织类别I组和II组。由转移和群体感应成分的蛋白质构建的共谱图表明,第一类质粒的蛋白质在共同进化时与第二类质粒的蛋白质在进化过程中发生了分歧。此外,在这些组中,蛋白质的系统发育通常占据相似的(即使不是相同的)树形拓扑。值得注意的是,在复制系统的蛋白质之间未发现这种关系。尽管RepA和RepB共同发展,但RepC却没有。复制蛋白也不会与转移和群体感应系统的蛋白一起进化。功能分析大部分与系统发育一致。 TraR激活了来自其组内而不是组间的质粒的启动子,并被TraR蛋白从组内而不是组间二聚化。但是,高度保守的oriT序列,无论组别如何,均由质粒转移系统处理。我们得出结论,这些质粒根据插入货物DNA的位置分为两类,群体感应和转移功能在两组之间而不是在两组之间共同进化,并且这种趋异进化扩展到功能。

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