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城市河流系统中的微生物群落响应在废水处理升级过程中主要受季节性主导。

Microbiome response in an urban river system is dominated by seasonality over wastewater treatment upgrades.

作者信息

Kodera Sho M, Sharma Anukriti, Martino Cameron, Dsouza Melissa, Grippo Mark, Lutz Holly L, Knight Rob, Gilbert Jack A, Negri Cristina, Allard Sarah M

机构信息

Scripps Institution of Oceanography, University of California San Diego, La Jolla, CA, USA.

Department of Quantitative Health Sciences, Lerner Research Institute, Cleveland Clinic, Cleveland, OH, USA.

出版信息

Environ Microbiome. 2023 Feb 19;18(1):10. doi: 10.1186/s40793-023-00470-4.

Abstract

BACKGROUND

Microorganisms such as coliform-forming bacteria are commonly used to assess freshwater quality for drinking and recreational use. However, such organisms do not exist in isolation; they exist within the context of dynamic, interactive microbial communities which vary through space and time. Elucidating spatiotemporal microbial dynamics is imperative for discriminating robust community changes from ephemeral ecological trends, and for improving our overall understanding of the relationship between microbial communities and ecosystem health. We conducted a seven-year (2013-2019) microbial time-series investigation in the Chicago Area Waterways (CAWS): an urban river system which, in 2016, experienced substantial upgrades to disinfection processes at two wastewater reclamation plants (WRPs) that discharge into the CAWS and improved stormwater capture, to improve river water quality and reduce flooding. Using culture-independent and culture-dependent approaches, we compared CAWS microbial ecology before and after the intervention.

RESULTS

Examinations of time-resolved beta distances between WRP-adjacent sites showed that community similarity measures were often consistent with the spatial orientation of site locations to one another and to the WRP outfalls. Fecal coliform results suggested that upgrades reduced coliform-associated bacteria in the effluent and the downstream river community. However, examinations of whole community changes through time suggest that the upgrades did little to affect overall riverine community dynamics, which instead were overwhelmingly driven by yearly patterns consistent with seasonality.

CONCLUSIONS

This study presents a systematic effort to combine 16S rRNA gene amplicon sequencing with traditional culture-based methods to evaluate the influence of treatment innovations and systems upgrades on the microbiome of the Chicago Area Waterway System, representing the longest and most comprehensive characterization of the microbiome of an urban waterway yet attempted. We found that the systems upgrades were successful in improving specific water quality measures immediately downstream of wastewater outflows. Additionally, we found that the implementation of the water quality improvement measures to the river system did not disrupt the overall dynamics of the downstream microbial community, which remained heavily influenced by seasonal trends. Such results emphasize the dynamic nature of microbiomes in open environmental systems such as the CAWS, but also suggest that the seasonal oscillations remain consistent even when perturbed.

摘要

背景

诸如大肠菌群形成细菌等微生物通常用于评估饮用水和娱乐用水的淡水质量。然而,这类微生物并非孤立存在;它们存在于动态、相互作用的微生物群落环境中,这些群落会随空间和时间而变化。阐明时空微生物动态对于区分群落的稳健变化与短暂的生态趋势,以及增进我们对微生物群落与生态系统健康之间关系的整体理解至关重要。我们在芝加哥地区水道(CAWS)开展了一项为期七年(2013 - 2019年)的微生物时间序列调查:这是一个城市河流系统,2016年,两个排入CAWS的废水回收厂(WRPs)对消毒工艺进行了大幅升级,并改善了雨水收集,以提高河流水质并减少洪水。我们采用非培养和培养依赖方法,比较了干预前后CAWS的微生物生态学。

结果

对WRP相邻站点间时间分辨的β距离的检查表明,群落相似性度量通常与站点位置之间以及与WRP排放口的空间方位一致。粪大肠菌群结果表明,升级减少了排放物和下游河流群落中与大肠菌群相关的细菌。然而,对整个群落随时间变化的检查表明,升级对河流整体群落动态影响不大,而河流整体群落动态主要由与季节性一致的年度模式驱动。

结论

本研究系统地将16S rRNA基因扩增子测序与传统基于培养的方法相结合,以评估处理创新和系统升级对芝加哥地区水道系统微生物组的影响,这是迄今对城市水道微生物组进行的最长且最全面的表征。我们发现系统升级成功改善了废水排放口紧邻下游的特定水质指标。此外,我们发现对河流系统实施的水质改善措施并未扰乱下游微生物群落的整体动态,下游微生物群落仍受季节性趋势的严重影响。这些结果强调了CAWS等开放环境系统中微生物组的动态性质,但也表明即使受到扰动,季节性振荡仍保持一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b75d/9938989/3be5df708832/40793_2023_470_Fig1_HTML.jpg

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