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Environmental and genetic determinants of plasmid mobility in pathogenic Escherichia coli

机译:病原大肠杆菌质粒迁移率的环境和遗传决定因素

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摘要

Plasmids are key vehicles of horizontal gene transfer (HGT), mobilizing antibiotic resistance, virulence, and other traits among bacterial populations. The environmental and genetic forces that drive plasmid transfer are poorly understood, however, due to the lack of definitive quantification coupled with genomic analysis. Here, we integrate conjugative phenotype with plasmid genotype to provide quantitative analysis of HGT in clinical Escherichia coli pathogens. We find a substantial proportion of these pathogens (25%) able to readily spread resistance to the most common classes of antibiotics. Antibiotics of varied modes of action had less than a 5-fold effect on conjugation efficiency in general, with one exception displaying 31-fold promotion upon exposure to macrolides and chloramphenicol. In contrast, genome sequencing reveals plasmid incompatibility group strongly correlates with transfer efficiency. Our findings offer new insights into the determinants of plasmid mobility and have implications for the development of treatments that target HGT.
机译:质粒是水平基因转移(HGT)的关键载体,调动细菌种群之间的抗生素抗性,毒力和其他性状。然而,由于缺乏与基因组分析偶联的定量缺乏,驱动质粒转移的环境和遗传力较差。这里,我们将缀合表型与质粒基因型整合,以提供临床大肠杆菌病原体HGT的定量分析。我们发现这些病原体(> 25%)的大量比例能够容易地展示对最常见的抗生素类别的抗性。各种作用方式的抗生素通常对缀合效率的影响一致小于5倍,并且在暴露于大环内酯和氯霉素时显示31倍的促进。相反,基因组测序显示质粒不相容性群体与转移效率强烈相关。我们的调查结果为质粒流动性的决定因素提供了新的见解,并对靶向HGT的治疗有影响。

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