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Importance of Extracellular DNA in the Fate and Transport of Antibiotic Resistance Genes Downstream of a Wastewater Treatment Plant

机译:废水处理厂中抗生素抗性基因的命运和转运中细胞外DNA的重要性

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摘要

A model is developed to account for antibiotic resistance genes (ARGs) as both intracellular DNA (iDNA) and extracellular DNA (eDNA) in predicting the fate and transport of ARGs in receiving waters downstream of wastewater treatment plants (WWTPs). eDNA can contribute to iDNA concentrations of ARGs through horizontal gene transfer (i.e., transformation); however, the prevalence of eDNA and its effects have not been addressed in previous field studies and predictive models. The present model tracks eDNA and iDNA in both the water column and the sediment, and it includes physical, chemical, and biological processes. It also provides a framework for systematically identifying conditions under which accounting for eDNA is important. For example, when the timescale for transformation is small compared with the timescale for advection and the water column concentration of eDNA is large compared with that of iDNA, ignoring eDNA can underpredict the total amount of ARGs significantly (e.g., by an order of magnitude or more). The model demonstrates that the eDNA fraction of ARGs in WWTP discharges is important to include in predictions for improved risk assessment of antibiotic resistance in the aquatic environment.
机译:建立了一个模型,将抗生素抗性基因(ARG)视为细胞内DNA(iDNA)和细胞外DNA(eDNA),以预测废水处理厂(WWTP)下游接受水中ARG的命运和运输。 eDNA可通过水平基因转移(即转化)促进ARG的iDNA浓度;但是,eDNA的流行及其影响尚未在以前的现场研究和预测模型中得到解决。本模型跟踪水柱和沉积物中的eDNA和iDNA,并包括物理,化学和生物过程。它还提供了一个系统地识别条件的框架,在此条件下,eDNA的计算很重要。例如,当转化的时间尺度与对流的时间尺度相比较小,而eDNA的水柱浓度与iDNA相比,则较大,则忽略eDNA可能会严重低估ARG的总量(例如,数量级高或更多)。该模型表明,污水处理厂废水中ARGs的eDNA分数对于将预测值包括在改善水生环境中抗生素耐药性风险评估的预测中非常重要。

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