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Competition between Transposable Elements and Mutator Genes in Bacteria

机译:细菌中转座因子与突变基因之间的竞争

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摘要

Although both genotypes with elevated mutation rate (mutators) and mobilization of insertion sequence (IS) elements have substantial impact on genome diversification, their potential interactions are unknown. Moreover, the evolutionary forces driving gradual accumulation of these elements are unclear: Do these elements spread in an initially transposon-free bacterial genome as they enable rapid adaptive evolution? To address these issues, we inserted an active IS1 element into a reduced Escherichia coli genome devoid of all other mobile DNA. Evolutionary laboratory experiments revealed that IS elements increase mutational supply and occasionally generate variants with especially large phenotypic effects. However, their impact on adaptive evolution is small compared with mismatch repair mutator alleles, and hence, the latter impede the spread of IS-carrying strains. Given their ubiquity in natural populations, such mutator alleles could limit early phase of IS element evolution in a new bacterial host. More generally, our work demonstrates the existence of an evolutionary conflict between mutation-promoting mechanisms.
机译:尽管突变率(突变子)和插入序列(IS)元件动员的基因型均对基因组多样化产生重大影响,但它们潜在的相互作用尚不清楚。此外,尚不清楚驱动这些元素逐渐积累的进化力:这些元素是否能够在最初无转座子的细菌基因组中传播,因为它们能够实现快速的适应性进化?为了解决这些问题,我们将一个活性IS1元件插入了一个缺乏所有其他可移动DNA的简化大肠杆菌基因组中。进化的实验室实验表明,IS元件增加了突变供应,并偶尔产生具有特别大的表型效应的变体。但是,与失配修复突变体等位基因相比,它们对适应性进化的影响很小,因此后者阻碍了携带IS的菌株的传播。考虑到它们在自然种群中的普遍性,这种突变等位基因可能会限制新细菌宿主中IS元素进化的早期阶段。更广泛地说,我们的研究证明了突变促进机制之间存在进化冲突。

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