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High Recombinant Frequency in Extraintestinal Pathogenic Escherichia coli Strains

机译:肠外致病性大肠杆菌菌株中的高重组频率

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Homologous recombination promotes genetic diversity by facilitating the integration of foreign DNA and intrachromosomal gene shuffling. It has been hypothesized that if recombination is variable among strains, selection should favor higher recombination rates among pathogens, as they face additional selection pressures from host defenses. To test this hypothesis we have developed a plasmid-based method for estimating the rate of recombination independently of other factors such as DNA transfer, selective processes, and mutational interference. Our results with 160 human commensal and extraintestinal pathogenic Escherichia coli (ExPEC) isolates show that the recombinant frequencies are extremely diverse (ranging 9 orders of magnitude) and plastic (they are profoundly affected by growth in urine, a condition commonly encountered by ExPEC). We find that the frequency of recombination is biased by strain lifestyle, as ExPEC isolates display strikingly higher recombination rates than their commensal counterparts. Furthermore, the presence of virulence factors is positively associated with higher recombination frequencies. These results suggest selection for high homologous recombination capacity, which may result in a higher evolvability for pathogens compared with commensals.
机译:同源重组通过促进外源DNA和染色体内基因改组的整合来促进遗传多样性。假设如果重组在菌株之间是可变的,则选择应支持病原体之间更高的重组率,因为它们面临来自宿主防御的额外选择压力。为了验证该假设,我们开发了一种基于质粒的方法来独立于其他因素(例如DNA转移,选择性过程和突变干扰)来估计重组速率。我们对160株人类共生和肠外致病性大肠杆菌(ExPEC)分离株的研究结果表明,重组频率极为多样化(范围为9个数量级)和塑料(它们受到尿液生长的深刻影响,这是ExPEC经常遇到的状况)。我们发现重组频率受到菌株生活方式的影响,因为ExPEC分离株显示出比同等菌株高得多的重组率。此外,毒力因子的存在与更高的重组频率呈正相关。这些结果表明选择高同源重组能力,与推荐相比,可能导致病原体具有更高的进化能力。

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