Department of Medical Microbiology and Infectious Diseases, Erasmus University Medical Centre Rotterdam (Erasmus MC), Rotterdam, The Netherlands.
PWNT, Andijk, The Netherlands.
Sci Rep. 2018 Oct 3;8(1):14727. doi: 10.1038/s41598-018-32987-x.
Drinking water utilities currently rely on a range of microbiological detection techniques to evaluate the quality of their drinking water (DW). However, microbiota profiling using culture-free 16S rRNA gene next-generation sequencing (NGS) provides an opportunity for improved monitoring of the microbial ecology and quality of DW. Here, we evaluated the utility of a previously validated microbiota profiling platform (MYcrobiota) to investigate the microbial dynamics of a full-scale, non-chlorinated DW distribution system (DWDS). In contrast to conventional methods, we observed spatial and temporal bacterial genus changes (expressed as operational taxonomic units - OTUs) within the DWDS. Further, a small subset of bacterial OTUs dominated with abundances that shifted across the length of the DWDS, and were particularly affected by a post-disinfection step. We also found seasonal variation in OTUs within the DWDS and that many OTUs could not be identified, even though MYcrobiota is specifically designed to reduce potential PCR sequencing artefacts. This suggests that our current knowledge about the microbial ecology of DW communities is limited. Our findings demonstrate that the user-friendly MYcrobiota platform facilitates culture-free, standardized microbial dynamics monitoring and has the capacity to facilitate the introduction of microbiota profiling into the management of drinking water quality.
饮用水处理厂目前依赖一系列微生物检测技术来评估饮用水(DW)的质量。然而,使用无培养 16S rRNA 基因下一代测序(NGS)进行微生物组分析为 DW 的微生物生态学和质量监测提供了改进的机会。在这里,我们评估了先前经过验证的微生物组分析平台(MYcrobiota)在调查全规模、非氯化 DW 分配系统(DWDS)微生物动态方面的实用性。与传统方法相比,我们观察到 DWDS 内细菌属的空间和时间变化(表示为操作分类单位 - OTUs)。此外,一小部分细菌 OTUs 占据主导地位,其丰度在 DWDS 的长度上发生变化,并且特别受到消毒后步骤的影响。我们还发现 DWDS 内 OTUs 的季节性变化,并且尽管 MYcrobiota 专门用于减少潜在的 PCR 测序伪影,但仍有许多 OTUs 无法识别。这表明我们目前对 DW 群落微生物生态学的了解是有限的。我们的研究结果表明,用户友好的 MYcrobiota 平台促进了无培养、标准化的微生物动态监测,并有可能促进将微生物组分析引入饮用水质量的管理中。