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Differential patterns of antimicrobial resistance in population subsets of Escherichia coli isolated from waste- and surface waters

机译:从废水和地表水中分离出的大肠杆菌种群亚群中抗菌素耐药性的差异模式

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摘要

The species Escherichia coli comprises different subgroups with distinct phylogeny, physiology and ecology and, thus, presumably, with different roles in antimicrobial resistance dissemination. £ colt strains isolated from raw and treated municipal wastewater and from urban water streams were characterized in terms of phylogenetic groups, antimicrobial resistance patterns and the presence of class 1 and class 2 integrons. Our main objective was to investigate the contribution of the different phylo-groups in antimicrobial resistance dissemination in urban waters. Croups A and Bl were predominant in all types of water, evidencing, respectively, the lowest and the highest resistance prevalence. Municipal wastewater treatment was accompanied by significant increases of ciprofloxacin and streptomycin resistance (p<0.01). Antimicrobial resistance prevalence differed significantly between the different phylo-groups and within the same group, mainly in group A. Such differences contributed to explain the higher ciprofloxacin and streptomycin resistance rates observed in treated effluent in comparison with the raw wastewater. We conclude that the dynamics of the bacterial populations has a major role on the dissemination of antimicrobial resistance in the environment.
机译:大肠杆菌物种包括具有不同系统发育,生理学和生态学的不同亚组,因此推测在抗菌素耐药性的传播中具有不同的作用。从系统处理组,抗菌素耐药性模式以及第1类和第2类整联体的存在方面对从原水和处理过的市政废水以及城市水体中分离出的£柯尔特菌株进行了表征。我们的主要目的是研究城市水中不同菌群在抗菌素耐药性传播中的作用。在所有类型的水中,主要群体A和B1分别表现出最低和最高的耐药率。市政废水处理伴随着环丙沙星和链霉素抗性的显着增加(p <0.01)。在不同的植物群之间和在同一组中,主要是在A组中,抗菌素耐药率存在显着差异。这些差异有助于解释与原始废水相比,处理后的废水中环丙沙星和链霉素的耐药率更高。我们得出结论,细菌种群的动态对环境中抗菌素耐药性的传播具有重要作用。

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