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Bacterial recombination promotes the evolution of multi-drug-resistance in functionally diverse populations

机译:细菌重组促进功能多样的人群中多药耐药性的演变

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摘要

Bacterial recombination is believed to be a major factor explaining the prevalence of multi-drug-resistance (MDR) among pathogenic bacteria. Despite extensive evidence for exchange of resistance genes from retrospective sequence analyses, experimental evidence for the evolutionary benefits of bacterial recombination is scarce. We compared the evolution of MDR between populations of Acinetobacter baylyi in which we manipulated both the recombination rate and the initial diversity of strains with resistance to single drugs. In populations lacking recombination, the initial presence of multiple strains resistant to different antibiotics inhibits the evolution of MDR. However, in populations with recombination, the inhibitory effect of standing diversity is alleviated and MDR evolves rapidly. Moreover, only the presence of DNA harbouring resistance genes promotes the evolution of resistance, ruling out other proposed benefits for recombination. Together, these results provide direct evidence for the fitness benefits of bacterial recombination and show that this occurs by mitigation of functional interference between genotypes resistant to single antibiotics. Although analogous to previously described mechanisms of clonal interference among alternative beneficial mutations, our results actually highlight a different mechanism by which interactions among co-occurring strains determine the benefits of recombination for bacterial evolution.
机译:细菌重组被认为是解释致病细菌中多药耐药性(MDR)患病率的主要因素。尽管从回顾性序列分析中获得了交换抗性基因的大量证据,但缺乏细菌重组进化优势的实验证据。我们比较了不动杆菌属种群之间MDR的进化,其中我们操纵了重组率和菌株对单一药物的抗性的初始多样性。在缺乏重组的人群中,最初存在多种对不同抗生素具有抗性的菌株会抑制MDR的进化。但是,在重组人群中,站立多样性的抑制作用得到缓解,MDR迅速发展。此外,只有具有抗性基因的DNA的存在才能促进抗性的进化,排除了重组的其他提议优势。总之,这些结果为细菌重组的适应性益处提供了直接证据,并表明这是通过减轻对单一抗生素具有抗性的基因型之间的功能性干扰而发生的。尽管类似于先前描述的其他有益突变之间的克隆干扰机制,但我们的结果实际上突显了一种不同的机制,通过该机制,共生菌株之间的相互作用决定了重组对细菌进化的益处。

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