University of Milan-Bicocca, ZooPlantLab, Biotechnology and Biosciences Department, Piazza della Scienza 2, 20126, Milan, Italy.
National Research Council (CNR), Institute of Biomedical Technologies (ITB), Via Fratelli Cervi, 93, 20090 Segrate (MI), Italy.
Sci Rep. 2017 Mar 14;7:44350. doi: 10.1038/srep44350.
Scientists recently reported the unexpected detection of unknown or poorly studied bacterial diversity in groundwater. The ability to uncover this neglected biodiversity mainly derives from technical improvements, and the term "microbial dark matter" was used to group taxa poorly investigated and not necessarily monophyletic. We focused on such under-investigated microbial dark matter of drinking water treatment plant from groundwater, across carbon filters, to post-chlorination. We tackled this topic using an integrated approach where the efficacy of stringent water filtration (10000 MWCO) in recovering even the smallest environmental microorganisms was coupled with high-throughput DNA sequencing to depict an informative spectrum of the neglected microbial diversity. Our results revealed that the composition of bacterial communities varies across the plant system: Parcubacteria (OD1) superphylum is found mainly in treated water, while groundwater has the highest heterogeneity, encompassing non-OD1 candidate phyla (Microgenomates, Saccharibacteria, Dependentiae, OP3, OP1, BRC1, WS3). Carbon filters probably act as substrate for microorganism growth and contribute to seeding water downstream, since chlorination does not modify the incoming bacterial community. New questions arise about the role of microbial dark matter in drinking water. Indeed, our results suggest that these bacteria might play a central role in the microbial dynamics of drinking water.
科学家最近报告称,在地下水检测到了未知或研究不足的细菌多样性。发现这种被忽视的生物多样性的能力主要源自技术进步,术语“微生物暗物质”被用来表示研究不足且不一定是单系的分类群。我们专注于研究来自地下水的饮用水处理厂中这种未被充分研究的微生物暗物质,跨越碳过滤器,直到后氯化。我们使用综合方法来解决这个问题,其中严格的水过滤(10000 MWCO)的功效可回收即使是最小的环境微生物,同时结合高通量 DNA 测序来描绘被忽视的微生物多样性的信息丰富的图谱。我们的结果表明,细菌群落的组成在整个工厂系统中存在差异:Parcubacteria(OD1)超门主要存在于处理水中,而地下水具有最高的异质性,包括非 OD1 候选门(Microgenomates、Saccharibacteria、Dependentiae、OP3、OP1、BRC1、WS3)。碳过滤器可能充当微生物生长的基质,并有助于下游水源的播种,因为氯化不会改变进入的细菌群落。关于微生物暗物质在饮用水中的作用出现了新的问题。事实上,我们的结果表明,这些细菌可能在饮用水的微生物动态中发挥核心作用。