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Prevalence of Antibiotic Resistance in Drinking Water Treatment and Distribution Systems

机译:饮用水处理和分配系统中抗生素耐药性的流行

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The occurrence and spread of antibiotic-resistant bacteria (ARB) are pressing public health problems worldwide, and aquatic ecosystems are a recognized reservoir for ARB. We used culture-dependent methods and quantitative molecular techniques to detect and quantify ARB and antibiotic resistance genes (ARGs) in source waters, drinking water treatment plants, and tap water from several cities in Michigan and Ohio. We found ARGs and heterotrophic ARB in all finished water and tap water tested, although the amounts were small. The quantities of most ARGs were greater in tap water than in finished water and source water. In general, the levels of bacteria were higher in source water than in tap water, and the levels of ARB were higher in tap water than in finished water, indicating that there was regrowth of bacteria in drinking water distribution systems. Elevated resistance to some antibiotics was observed during water treatment and in tap water. Water treatment might increase the antibiotic resistance of surviving bacteria, and water distribution systems may serve as an important reservoir for the spread of antibiotic resistance to opportunistic pathogens.
机译:耐药性细菌(ARB)的发生和扩散正在全球范围内紧迫解决公共卫生问题,而水生生态系统是ARB公认的储藏库。我们使用了依赖于文化的方法和定量分子技术来检测和定量源水,饮用水处理厂和密歇根州和俄亥俄州几个城市的自来水中的ARB和抗生素抗性基因(ARG)。我们测试的所有成品水和自来水中都发现了ARG和异养ARB,尽管数量很少。自来水中的大多数ARG的数量要大于最终水和自来水的数量。通常,自来水中的细菌水平高于自来水中,自来水中的ARB水平高于成品水中,这表明饮用水分配系统中存在细菌再生。在水处理和自来水中观察到对某些抗生素的耐药性升高。水处理可能会增加存活细菌的抗生素耐药性,而配水系统可能会成为抗生素耐药性向机会病原体传播的重要储存库。

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