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细菌类 II 内含子家族隐藏而复杂的进化史首次被揭开。

First unraveling of the hidden and intricate evolutionary history of a bacterial group II intron family.

机构信息

Department of Microbiology and Immunology, McGill University, Montréal, QC, Canada H3A 2B4.

McGill Centre for Microbiome Research, Montréal, QC, Canada.

出版信息

Evolution. 2023 Jun 1;77(6):1382-1395. doi: 10.1093/evolut/qpad050.

Abstract

Bacterial group II introns are large RNA enzymes that self-splice from primary transcripts. Following excision, they can invade various DNA target sites using RNA-based mobility pathways. As fast evolving retromobile elements, which move between genetic loci within and across species, their evolutionary history was proved difficult to study and infer. Here we identified several homologs of Ll.LtrB, the model group II intron from Lactococcus lactis, and traced back their evolutionary relationship through phylogenetic analyses. Our data demonstrate that the Ll.LtrB homologs in Lactococci originate from a single and recent lateral transfer event of Ef.PcfG from Enterococcus faecalis. We also show that these introns disseminated in Lactococci following recurrent episodes of independent mobility events in conjunction with occurrences of lateral transfer. Our phylogenies identified additional lateral transfer events from the environmental clade of the more diverged Lactococci introns to a series of low-GC gram-positive bacterial species including E. faecalis. We also determined that functional intron adaptation occurred early in Lactococci following Ef.PcfG acquisition from E. faecalis and that two of the more diverged Ll.LtrB homologs remain proficient mobile elements despite the significant number of mutations acquired. This study describes the first comprehensive evolutionary history of a bacterial group II intron.

摘要

细菌组 II 内含子是自我剪接的大型 RNA 酶,从初级转录本中剪接出来。切除后,它们可以利用基于 RNA 的迁移途径侵入各种 DNA 靶位。作为在种内和种间遗传基因座之间快速进化的返转座元件,它们的进化历史很难研究和推断。在这里,我们鉴定了几个来自乳酸乳球菌的 Ll.LtrB 模型组 II 内含子的同源物,并通过系统发育分析追溯了它们的进化关系。我们的数据表明,乳球菌中的 Ll.LtrB 同源物起源于来自粪肠球菌的 Ef.PcfG 的单一且最近的横向转移事件。我们还表明,这些内含子在乳球菌中传播是由于与侧向转移同时发生的独立迁移事件的反复发生。我们的系统发育树还鉴定了来自更分化的乳球菌内含子的环境分支的其他侧向转移事件,这些事件转移到一系列低 GC 革兰氏阳性细菌物种,包括粪肠球菌。我们还确定,在粪肠球菌中获得 Ef.PcfG 后,功能内含子的适应性在乳球菌中很早就发生了,并且尽管获得了大量突变,两个更分化的 Ll.LtrB 同源物仍然是有效的移动元件。本研究描述了细菌组 II 内含子的第一个全面进化史。

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