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Implementation and integration of microbial source tracking in a river watershed monitoring plan

机译:河流流域监测计划中微生物源跟踪的实施与集成

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摘要

Fecal pollution of water bodies poses a serious threat for public health and ecosystems. Microbial source tracking (MST) is used to track the source of this pollution facilitating better management of pollution at the source. In this study we tested 12 MST markers to track human, ruminant, sheep, horse, pig and gull pollution to assess their usefulness as an effective management tool of water quality. First, the potential of the selected markers to track the source was evaluated using fresh fecal samples. Subsequently, we evaluated their performance in a catchment with different impacts, considering land use and environmental conditions. All MST markers showed high sensitivity and specificity, although none achieved 100% for both. Although some of the MST markers were detected in hosts other than the intended ones, their abundance in the target group was always several orders of magnitude higher than in the non-target hosts, demonstrating their suitability to distinguish between sources of pollution. The MST analysis matched the land use in the watershed allowing an accurate assessment of the main sources of pollution, in this case mainly human and ruminant pollution. Correlating environmental parameters including temperature and rainfall with MST markers provided insight into the dynamics of the pollution in the catchment. The levels of the human marker showed a significant negative correlation with rainfall in human polluted areas suggesting a dilution of the pollution, whereas at agricultural areas the ruminant marker increased with rainfall. There were no seasonal differences in the levels of human marker, indicating human pollution as a constant pressure throughout the year, whereas the levels of the ruminant marker was influenced by the seasons, being more abundant in summer and autumn. MST analysis integrated with land use and environmental data can improve the management of fecal polluted areas and set up best practice.
机译:粪便污染水体对公共卫生和生态系统构成严重威胁。微生物源跟踪(MST)用于跟踪这种污染的来源,促进了对源污染的更好管理。在这项研究中,我们测试了12个MST标记,以跟踪人,反刍动物,绵羊,马,猪和鸥污染,以评估它们作为水质的有效管理工具的实用性。首先,使用新鲜的粪便样品评估所选标记以跟踪源的潜力。随后,考虑到土地利用和环境条件,我们评估了它们在集水区内的表现。所有MST标记表现出高的灵敏度和特异性,尽管两者都没有实现100%。尽管在除了预期的宿主中检测到一些MST标记,但它们在目标组中的丰度始终高于非目标主体中的数量级,展示了他们适应区分污染源的适用性。 MST分析与流域的土地使用相匹配,允许准确评估主要污染源,在这种情况下主要是人类和反刍污染。将环境参数与MST标记的温度和降雨相关,提供了对集水区污染动态的洞察力。人类标记的水平显示出与人类污染区域的降雨量显着的负相关,表明污染稀释,而在农业区域的反刍标记随着降雨量而增加。人类标志物的水平没有季节性差异,表明人类污染作为全年持续压力,而反刍动物标记的水平受到季节的影响,夏季和秋季更丰富。 MST分析与土地利用和环境数据集成,可以改善粪便污染领域的管理,并建立最佳实践。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第20期|139573.1-139573.12|共12页
  • 作者单位

    UCD School of Biomolecular and Biomedical Science UCD Earth Institute UCD Conway Institute University College Dublin Dublin Ireland Department of Genetics Microbiology and Statistics University of Barcelona Barcelona Catalonia Spain;

    UCD School of Biomolecular and Biomedical Science UCD Earth Institute UCD Conway Institute University College Dublin Dublin Ireland Centre for Water Resource Systems TU Wien Vienna Austria;

    UCD School of Biomolecular and Biomedical Science UCD Earth Institute UCD Conway Institute University College Dublin Dublin Ireland;

    Computational Genomics Laboratory Department of Genetics Microbiology and Statistics University of Barcelona Barcelona Catalonia Spain;

    UCD School of Biomolecular and Biomedical Science UCD Earth Institute UCD Conway Institute University College Dublin Dublin Ireland;

    UCD School of Biomolecular and Biomedical Science UCD Earth Institute UCD Conway Institute University College Dublin Dublin Ireland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fecal pollution; Microbial source tracking; Host-specific markers; Bacteroidales; Water management;

    机译:粪便污染;微生物源跟踪;特定于宿主的标记;膀翼;水管理;

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