Metagenomic analysis unveiled the response of microbial community and antimicrobial resistome in natural water body to duck farm sewage

IF 7.6 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Pollution Pub Date : 2024-09-02 DOI:10.1016/j.envpol.2024.124784
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Abstract

Sewages from duck farms are often recognized as a major source of antimicrobial resistance and pathogenic bacteria discharged to natural water bodies, but few studies depicted the dynamic changes in resistome and microbial communities in the rivers under immense exposure of sewage discharge. In this study, we investigated the ecological and environmental risks of duck sewages to the rivers that geographically near to the duck farms with short-distance (<1 km) using 16S rRNA amplicon and metagenomic sequencing. The results showed that a total of 20 ARG types were identified with abundances ranged from 0.61 to 1.33 cpc. Of note, the genes modulate resistances against aminoglycoside, bacitracin and beta-lactam were the most abundant ARGs. Limnohabitans, Fluviibacter and Cyanobium were the top 3 predominant genera in the microbial community. The alpha diversity of overall microbial community decrease while the abundance of pathogen increase during the input of sewage within 200 m. Sul1 and bacA were the dominant ARGs brought from duck farm sewage. The community variations of ARGs and microbiome were primarily driven by pH and temperature. Total phosphorus was significantly correlated to alpha diversity and top 30 ARGs subtype. Stochastic processes was the dominated microbial assembly pattern and did not be altered by sewage. We also highlighted the ecological risk caused by blaGES which possibly could be mitigated by Cyanobacteria, and the natural water body can purify partial ARGs as well as microbiome from duck farms sewage. These findings expanded our knowledge regarding the ecological risks by wastes from the livestock farm, and underscoring the necessity to monitor ARGs in farm-surrounding water bodies.

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元基因组分析揭示了天然水体中微生物群落和抗菌药耐药性组对养鸭场污水的反应。
养鸭场的污水通常被认为是向自然水体排放抗菌素耐药性和致病菌的主要来源,但很少有研究描述在污水排放的巨大暴露下河流中耐药性组和微生物群落的动态变化。本研究利用 16S rRNA 扩增片段和元基因组测序技术,对距离养鸭场较近的河流(< 1km)进行了养鸭污水的生态和环境风险调查。结果表明,共鉴定出 20 种 ARG 类型,丰度在 0.61 至 1.33 cpc 之间。值得注意的是,对氨基糖苷类、杆菌肽和β-内酰胺类耐药性的调节基因是最丰富的 ARGs。微生物群落中最主要的 3 个属是沼气杆菌属、萤火虫属和蓝藻属。在污水进入 200 米范围内时,整个微生物群落的α多样性降低,而病原体的丰度增加。Sul1 和 bacA 是养鸭场污水中最主要的 ARGs。ARGs 和微生物群落的变化主要受 pH 值和温度的影响。总磷与α多样性和前30种ARGs亚型明显相关。随机过程是主要的微生物集结模式,不会因污水而改变。我们还强调了 blaGES 带来的生态风险,而蓝藻可能会减轻这种风险,自然水体可以净化部分 ARGs 以及养鸭场污水中的微生物组。这些发现扩展了我们对畜牧场废物生态风险的认识,并强调了监测养殖场周边水体中 ARGs 的必要性。
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来源期刊
Environmental Pollution
Environmental Pollution 环境科学-环境科学
CiteScore
16.00
自引率
6.70%
发文量
2082
审稿时长
2.9 months
期刊介绍: Environmental Pollution is an international peer-reviewed journal that publishes high-quality research papers and review articles covering all aspects of environmental pollution and its impacts on ecosystems and human health. Subject areas include, but are not limited to: • Sources and occurrences of pollutants that are clearly defined and measured in environmental compartments, food and food-related items, and human bodies; • Interlinks between contaminant exposure and biological, ecological, and human health effects, including those of climate change; • Contaminants of emerging concerns (including but not limited to antibiotic resistant microorganisms or genes, microplastics/nanoplastics, electronic wastes, light, and noise) and/or their biological, ecological, or human health effects; • Laboratory and field studies on the remediation/mitigation of environmental pollution via new techniques and with clear links to biological, ecological, or human health effects; • Modeling of pollution processes, patterns, or trends that is of clear environmental and/or human health interest; • New techniques that measure and examine environmental occurrences, transport, behavior, and effects of pollutants within the environment or the laboratory, provided that they can be clearly used to address problems within regional or global environmental compartments.
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