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要到达龙头还有很长的路要走:饮用水质量的核心是微生物组和基于 DNA 的组学。

It's a Long Way to the Tap: Microbiome and DNA-Based Omics at the Core of Drinking Water Quality.

机构信息

Biotechnology and Biosciences Department, University of Milano-Bicocca, 20126 Milan, Italy.

Institut Jacques Monod, Université Paris Cité, CNRS, 75013 Paris, France.

出版信息

Int J Environ Res Public Health. 2022 Jun 28;19(13):7940. doi: 10.3390/ijerph19137940.

Abstract

Microbial communities interact with us and affect our health in ways that are only beginning to be understood. Microorganisms have been detected in every ecosystem on Earth, as well as in any built environment that has been investigated. Drinking water sources, drinking water treatment plants and distribution systems provide peculiar microbial ecological niches, dismantling the belief of the "biological simplicity" of drinking water. Nevertheless, drinking water microbiomes are understudied compared to other microbiomes. Recent DNA sequencing and meta-omics advancements allow a deeper understanding of drinking water microbiota. Thus, moving beyond the limits of day-to-day testing for specific pathogenic microbes, new approaches aim at predicting microbiome changes driven by disturbances at the macro-scale and overtime. This will foster an effective and proactive management of water sources, improving the drinking water supply system and the monitoring activities to lower public health risk. Here, we want to give a new angle on drinking water microbiome research. Starting from a selection of 231 scientific publications on this topic, we emphasize the value of biodiversity in drinking water ecosystems and how it can be related with industrialization. We then discuss how microbiome research can support sustainable drinking water management, encouraging collaborations across sectors and involving the society through responsible research and innovation.

摘要

微生物群落以我们尚未完全了解的方式与我们相互作用并影响我们的健康。微生物已在地球上的每个生态系统以及经过调查的任何人工环境中被检测到。饮用水源、饮用水处理厂和分配系统提供了独特的微生物生态位,打破了饮用水“生物简单性”的观念。然而,与其他微生物组相比,饮用水微生物组的研究还很不足。最近的 DNA 测序和元组学进展使我们能够更深入地了解饮用水微生物组。因此,除了日常针对特定致病微生物进行的检测之外,新的方法旨在预测由宏观尺度和随时间推移的干扰引起的微生物组变化。这将促进水源的有效和主动管理,改善饮用水供应系统和监测活动,以降低公共健康风险。在这里,我们想从这个主题的 231 篇科学出版物中选择一些,从新的角度探讨饮用水微生物组的研究。我们强调了饮用水生态系统中生物多样性的价值,以及它如何与工业化相关。然后,我们讨论了微生物组研究如何支持可持续的饮用水管理,鼓励跨部门合作,并通过负责任的研究和创新让社会参与其中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5193/9266242/95b8aee32b49/ijerph-19-07940-g001.jpg

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