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Effluents of wastewater treatment plants promote the rapid stabilization of the antibiotic resistome in receiving freshwater bodies

机译:废水处理厂的流出物促进抗生素含量的快速稳定在接受淡水体中

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摘要

Treated wastewater discharged into the environment acts as a disturbance of the natural microbial communities in terms of taxonomic composition and of functional gene pool, including antibiotic resistance genes. We tested whether stochastic and heterogeneous site-specific trajectories or generalities, potentially driven by deterministic processes, control the fate of allochthonous bacteria from anthropogenic sources and the persistence of their functional traits in freshwater. Finding generalities would allow the identification of wastewater treatments that could be effective in abating determinants of antibiotic resistance, We analysed the short-term response of native bacterial communities in waters exposed to the disturbance of wastewater at different dilutions, using a metagenomic approach that revealed both microbial community composition and the scope and abundance of the resistome that can pose indirect risks to human health. We found that the taxonomic composition of the communities after the disturbance was driven by case-specific stochastic processes, whereas the resistome had a deterministic trajectory, rapidly stabilising its functional traits with higher proportions of wastewater effluents, regardless of differences in taxonomic composition, richness of antibiotic resistance genes and of bacterial taxa, phenotypic features of the bacterial communities, and type of wastewater treatment. The observed deterministic proliferation of resistomes in freshwater bodies receiving wastewater effluents, suggests that this process may contribute to the global propagation of antibiotic resistance, and thus calls for new legislations promoting alternative tertiary treatments for the wastewater reuse, and targeting bacterial functional traits and not only bacterial abundances. (C) 2019 Elsevier Ltd. All rights reserved.
机译:将处理到环境中的处理废水作为自然微生物组成和功能性基因库的自然微生物群落的干扰,包括抗生素抗性基因。我们测试了是否通过确定性过程驱动的随机和异质位点特异性轨迹或普遍驱动,从淡水中控制来自人为来源的表发育细菌的命运和它们的功能性状的持续性。寻找总体将允许鉴定可有效减少抗生素抗性的决定因素的废水处理,我们分析了在不同稀释液下暴露在不同稀释液中暴露于废水干扰的水域中的天然细菌社区的短期反应,使用透露两者微生物群落组成以及可能对人体健康构成间接风险的抵抗力的范围和丰度。我们发现,在扰动之后,扰动之后的群体的分类组成是特异性随机过程的驱动,而耐压具有确定性轨迹,迅速稳定其具有更高比例的废水流出物的功能性状,无论分类组成的差异,丰富的差异抗生素抗性基因和细菌素,细菌群体的表型特征以及废水处理的类型。观察到接受废水流出物的淡水体中的近似滤网的确定性激增,表明该过程可能导致抗生素抗性的全局繁殖,因此要求促进用于废水再利用的替代三级治疗的新立法,并靶向细菌功能性状,不仅靶向细菌功能性细菌丰富。 (c)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Water Research 》 |2019年第jul1期| 72-81| 共10页
  • 作者单位

    Natl Res Council CNR IRSA Water Res Inst Microbial Ecol Grp Largo Tonolli 50 I-28922 Verbania Italy;

    Sun Yat Sen Univ Sch Marine Sci Xingang Xi Rd 135 Guangzhou 510275 Guangdong Peoples R China;

    Natl Res Council CNR IRSA Water Res Inst Microbial Ecol Grp Largo Tonolli 50 I-28922 Verbania Italy;

    Natl Res Council CNR IRSA Water Res Inst Microbial Ecol Grp Largo Tonolli 50 I-28922 Verbania Italy;

    Natl Res Council CNR IRSA Water Res Inst Microbial Ecol Grp Largo Tonolli 50 I-28922 Verbania Italy;

    Natl Res Council CNR IRSA Water Res Inst Microbial Ecol Grp Largo Tonolli 50 I-28922 Verbania Italy;

    Univ Hong Kong Environm Biotechnol Lab Hong Kong Peoples R China;

    Natl Res Council CNR IRSA Water Res Inst Microbial Ecol Grp Largo Tonolli 50 I-28922 Verbania Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aquatic microbiome; Antibiotic resistome; Resistance genes; Wastewater effluent ratio; Stability;

    机译:水生微生物组;抗生素抗性;抗性基因;废水流出物率;稳定性;

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