Temporal and spatial changes in the abundance of antibiotic resistance gene markers in a wastewater treatment plant.

IF 2.5 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Guillaume Cailleau, Thomas Junier, Christophe Paul, Mathilda Fatton, Andrea Corona-Ramirez, Ophelie Gning, Karin Beck, Jacques Vidal, Helmut Bürgmann, Pilar Junier
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引用次数: 0

Abstract

In this study, we investigated the temporal and spatial quantitative changes in the concentration of antibiotic resistance gene (ARG) markers in a municipal wastewater treatment plant (WWTP). Four ARGs conferring resistance to different classes of antibiotics (ermB, sul1, tet[W], and blaCTXM) and a gene used as a proxy for ARG pollution (intl1) were quantified in two separate sampling campaigns covering two and half years of operation of the WWTP. First, a systematic monthly monitoring of multiple points in the inlet and the outlet revealed an absolute decrease in the concentration of all analyzed ARGs. However, the relative abundance of sul1 and intl1 genes relative to the total bacterial load (estimated using the universal marker 16S rDNA) increased in the outlet samples as compared to the inlet. To pinpoint the exact stage of removal and/or enrichment within the WWTP, a second sampling including the stages of the biological treatment was performed bimonthly. This revealed a distinct enrichment of sul1 and intl1 genes during the biological treatment phase. Moreover, the temporal and spatial variations in ARG abundance patterns within the WWTP underscored the complexity of the dynamics associated with the removal of ARGs during wastewater treatment. Understanding these dynamics is pivotal for developing efficient strategies to mitigate the dissemination of ARGs in aquatic environments. PRACTITIONER POINTS: Regular monitoring of ARG markers in WWTPs is essential to assess temporal and spatial changes, aiding in the development of effective mitigation strategies. Understanding the dynamics of ARG abundance during biological treatment is crucial for optimizing processes and minimizing dissemination in aquatic environments. Increased relative abundance of certain ARGs highlights potential enrichment during wastewater treatment, necessitating targeted interventions. Systematic monitoring of multiple points within WWTPs can provide valuable insights into the efficacy of treatment processes in reducing ARG levels over time. The complexity of ARG abundance patterns underscores the need to develop holistic approaches to tackle antibiotic resistance in wastewater systems.

污水处理厂中抗生素耐药性基因标记丰度的时空变化。
本研究调查了城市污水处理厂(WWTP)中抗生素耐药基因(ARG)标记物浓度的时空定量变化。在污水处理厂运行的两年半时间里,我们分别进行了两次采样活动,对四种对不同类别抗生素产生耐药性的 ARG(ermB、sul1、tet[W]和 blaCTXM)和一种作为 ARG 污染替代物的基因(intl1)进行了定量分析。首先,每月对进水口和出水口的多个点进行系统监测,结果显示所有分析的 ARGs 浓度都绝对下降。然而,与进水口相比,出水口样本中 sul1 和 intl1 基因相对于细菌总负荷(使用通用标记 16S rDNA 估算)的相对丰度有所增加。为了确定污水处理厂内去除和/或富集的确切阶段,每两个月进行一次第二次取样,包括生物处理的各个阶段。结果显示,在生物处理阶段,sul1 和 intl1 基因明显富集。此外,污水处理厂内 ARG 丰度模式的时间和空间变化凸显了污水处理过程中去除 ARG 相关动态的复杂性。了解这些动态变化对于制定有效策略以减少 ARGs 在水生环境中的传播至关重要。实践点:定期监测污水处理厂中的 ARG 标记对评估时间和空间变化至关重要,有助于制定有效的减缓策略。了解生物处理过程中 ARG 丰度的动态变化对于优化处理过程和最大限度地减少在水生环境中的传播至关重要。某些 ARG 相对丰度的增加突显了污水处理过程中潜在的富集问题,因此有必要采取有针对性的干预措施。对污水处理厂内的多个点进行系统监测,可为了解处理工艺在降低 ARG 水平方面的功效提供宝贵的信息。ARG 丰度模式的复杂性突出表明,有必要制定整体方法来解决污水系统中的抗生素耐药性问题。
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来源期刊
Water Environment Research
Water Environment Research 环境科学-工程:环境
CiteScore
6.30
自引率
0.00%
发文量
138
审稿时长
11 months
期刊介绍: Published since 1928, Water Environment Research (WER) is an international multidisciplinary water resource management journal for the dissemination of fundamental and applied research in all scientific and technical areas related to water quality and resource recovery. WER''s goal is to foster communication and interdisciplinary research between water sciences and related fields such as environmental toxicology, agriculture, public and occupational health, microbiology, and ecology. In addition to original research articles, short communications, case studies, reviews, and perspectives are encouraged.
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