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The interplay of restriction-modification systems with mobile genetic elements and their prokaryotic hosts

机译:限制性修饰系统与移动遗传元件及其原核宿主之间的相互作用

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The roles of restriction-modification (R-M) systems in providing immunity against horizontal gene transfer (HGT) and in stabilizing mobile genetic elements (MGEs) have been much debated. However, few studies have precisely addressed the distribution of these systems in light of HGT, its mechanisms and its vectors. We analyzed the distribution of R-M systems in 2261 prokaryote genomes and found their frequency to be strongly dependent on the presence of MGEs, CRISPR-Cas systems, integrons and natural transformation. Yet R-M systems are rare in plasmids, in prophages and nearly absent from other phages. Their abundance depends on genome size for small genomes where it relates with HGT but saturates at two occurrences per genome. Chromosomal R-M systems might evolve under cycles of purifying and relaxed selection, where sequence conservation depends on the biochemical activity and complexity of the system and total gene loss is frequent. Surprisingly, analysis of 43 pan-genomes suggests that solitary R-M genes rarely arise from the degradation of R-M systems. Solitary genes are transferred by large MGEs, whereas complete systems are more frequently transferred autonomously or in small MGEs. Our results suggest means of testing the roles for R-M systems and their associations with MGEs.
机译:限制性修饰(R-M)系统在提供针对水平基因转移(HGT)的免疫力和稳定移动遗传元件(MGEs)方面的作用已引起广泛争议。然而,很少有研究根据HGT,其机制和载体精确地研究这些系统的分布。我们分析了R-M系统在2261个原核生物基因组中的分布,发现它们的频率强烈依赖于MGE,CRISPR-Cas系统,整合素和自然转化的存在。然而,R-M系统在质粒,原噬菌体中很少见,而在其他噬菌体中几乎不存在。它们的丰度取决于小型基因组的基因组大小,而小型基因组与HGT有关,但每个基因组两次出现饱和。染色体R-M系统可能会在纯化和宽松选择的循环下进化,其中序列保守性取决于系统的生化活性和复杂性,并且总基因丢失非常频繁。出乎意料的是,对43个全基因组的分析表明,单独的R-M基因很少来自R-M系统的降解。孤独基因是由大型MGE转移的,而完整的系统则更经常自主或在小型MGE中转移。我们的结果提出了测试R-M系统角色及其与MGE关联的方法。

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