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首页> 外文期刊>Genome Biology and Evolution >Just the Two of Us? A Family of Pseudomonas Megaplasmids Offers a Rare Glimpse into the Evolution of Large Mobile Elements
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Just the Two of Us? A Family of Pseudomonas Megaplasmids Offers a Rare Glimpse into the Evolution of Large Mobile Elements

机译:只有我们俩?假单胞菌(Pseudomonas Megaplasmids)家族为大型移动元件的进化提供了罕见的一瞥。

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摘要

Pseudomonads are ubiquitous group of environmental proteobacteria, well known for their roles in biogeochemical cycling, in the breakdown of xenobiotic materials, as plant growth promoters, and as pathogens of a variety of host organisms. We have previously identified a large megaplasmid present within one isolate of the plant pathogen Pseudomonas syringae, and here we report that a second member of this megaplasmid family is found within an environmental Pseudomonad isolate most closely related to Pseudomonas putida. Many of the shared genes are involved in critical cellular processes like replication, transcription, translation, and DNA repair. We argue that presence of these shared pathways sheds new light on discussions about the types of genes that undergo horizontal gene transfer (i.e., the complexity hypothesis) as well as the evolution of pangenomes. Furthermore, although both megaplasmids display a high level of synteny, genes that are shared differ by over 50% on average at the amino acid level. This combination of conservation in gene order despite divergence in gene sequence suggests that this Pseudomonad megaplasmid family is relatively old, that gene order is under strong selection within this family, and that there are likely many more members of this megaplasmid family waiting to be found in nature.
机译:假单胞菌是无处不在的环境蛋白细菌群,以其在生物地球化学循环中,在异种材料的分解中,作为植物生长促进剂以及作为多种宿主生物的病原体的作用而众所周知。我们以前已经确定了一种植物病原体丁香假单胞菌的分离株中存在一个大的巨质粒,并且在这里我们报告说,在与恶臭假单胞菌最密切相关的环境假单胞菌分离物中发现了该大质粒家族的第二个成员。许多共享基因参与关键的细胞过程,例如复制,转录,翻译和DNA修复。我们认为这些共享途径的存在为有关经历水平基因转移的基因类型(即复杂性假设)以及全基因组进化提供了新的思路。此外,尽管两个大质粒均显示出高水平的同义性,但是共有的基因在氨基酸水平上平均相差超过50%。尽管基因序列存在差异,但基因顺序上的这种保守性组合表明,该假单胞菌大质粒家族相对较老,该家族中的基因顺序处于强选择之下,并且可能在该物种中发现更多的该大质粒家族成员。性质。

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