Triclocarban Influences Antibiotic Resistance and Alters Anaerobic Digester Microbial Community Structure

三氯卡班 无氧运动 化学 微生物种群生物学 流出 环境化学 三氯生 生物固体 食品科学 厌氧消化 抵抗性 整合子 甲烷 微生物学 生物 抗生素耐药性 抗生素 细菌 生物化学 环境工程 环境科学 生理学 有机化学 医学 病理 遗传学
作者
Daniel E. Carey,Daniel Zitomer,Krassimira R. Hristova,Anthony D. Kappell,Patrick J. McNamara
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:50 (1): 126-134 被引量:93
标识
DOI:10.1021/acs.est.5b03080
摘要

Triclocarban (TCC) is one of the most abundant organic micropollutants detected in biosolids. Lab-scale anaerobic digesters were amended with TCC at concentrations ranging from the background concentration of seed biosolids (30 mg/kg) to toxic concentrations of 850 mg/kg to determine the effect on methane production, relative abundance of antibiotic resistance genes, and microbial community structure. Additionally, the TCC addition rate was varied to determine the impacts of acclimation time. At environmentally relevant TCC concentrations (max detect = 440 mg/kg), digesters maintained function. Digesters receiving 450 mg/kg of TCC maintained function under gradual TCC addition, but volatile fatty acid concentrations increased, pH decreased, and methane production ceased when immediately fed this concentration. The concentrations of the mexB gene (encoding for a multidrug efflux pump) were higher with all concentrations of TCC compared to a control, but higher TCC concentrations did not correlate with increased mexB abundance. The relative abundance of the gene tet(L) was greater in the digesters that no longer produced methane, and no effect on the relative abundance of the class 1 integron integrase encoding gene (intI1) was observed. Illumina sequencing revealed substantial community shifts in digesters that functionally failed from increased levels of TCC. More subtle, yet significant, community shifts were observed in digesters amended with TCC levels that did not inhibit function. This research demonstrates that TCC can select for a multidrug resistance encoding gene in mixed community anaerobic environments, and this selection occurs at concentrations (30 mg/kg) that can be found in full-scale anaerobic digesters (U.S. median concentration = 22 mg/kg, mean = 39 mg/kg).
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