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Coselection for microbial resistance to metals and antibiotics in freshwater microcosms

机译:淡水微生物对金属和抗生素的微生物抗性的共选

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摘要

Bacterial resistances to diverse metals and antibiotics are often genetically linked, suggesting that exposure to toxic metals may select for strains resistant to antibiotics and vice versa. To test the hypothesis that resistances to metals and antibiotics are coselected for in environmental microbial assemblages, we investigated the frequency of diverse resistances in freshwater microcosms amended with Cd, Ni, ampicillin or tetracycline. We found that all four toxicants significantly increased the frequency of bacterioplankton resistance to multiple, chemically unrelated metals and antibiotics. An ampicillin-resistant strain of the opportunistic human pathogen Ralstonia mannitolilytica was enriched in microcosms amended with Cd. Frequencies of antibiotic resistance were elevated in microcosms with metal concentrations representative of industry and mining-impacted environments (0.01-1 mM). Metal but not antibiotic amendments decreased microbial diversity, and a weeklong exposure to high concentrations of ampicillin (0.01-10 mg l(-1)) and tetracycline (0.03-30 mg l(-1)) decreased microbial abundance only slightly, implying a large reservoir of antibiotic resistance in the studied environment. Our results provide first experimental evidence that the exposure of freshwater environments to individual metals and antibiotics selects for multiresistant microorganisms, including opportunistic human pathogens.
机译:细菌对多种金属和抗生素的抗药性通常是遗传相关的,这表明接触有毒金属可能会选择对抗生素具有抗药性的菌株,反之亦然。为了检验在环境微生物组合中共同选择对金属和抗生素抗药性的假设,我们调查了在用Cd,Ni,氨苄青霉素或四环素改良的淡水微生物中各种抗药性的频率。我们发现,所有四种有毒物质均显着增加了浮游细菌对多种化学上无关的金属和抗生素的耐药性频率。机会性人类病原体Ralstonia mannitolilytica的耐氨苄青霉素的菌株富含用Cd修饰的微观世界。在微观环境中,抗生素耐药性的频率升高,金属浓度代表了工业和采矿影响环境(0.01-1 mM)。金属而不是抗生素改良剂会降低微生物多样性,而一周暴露于高浓度的氨苄西林(0.01-10 mg l(-1))和四环素(0.03-30 mg l(-1))仅会稍微降低微生物丰度,这意味着在研究环境中有大量的抗生素耐药性。我们的结果提供了第一个实验证据,表明淡水环境暴露于单独的金属和抗生素会选择具有多重抗性的微生物,包括机会性人类病原体。

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