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首页> 外文期刊>Applied and Environmental Microbiology >Automated Sampling Procedures Supported by High Persistence of Bacterial Fecal Indicators and Bacteroidetes Genetic Microbial Source Tracking Markers in Municipal Wastewater during Short-Term Storage at 5°C
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Automated Sampling Procedures Supported by High Persistence of Bacterial Fecal Indicators and Bacteroidetes Genetic Microbial Source Tracking Markers in Municipal Wastewater during Short-Term Storage at 5°C

机译:在5°C短期存储期间,高浓度的细菌粪便指示剂和拟杆菌类细菌遗传微生物源跟踪标记支持的自动采样程序

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摘要

Because of high diurnal water quality fluctuations in raw municipal wastewater, the use of proportional autosampling over a period of 24 h at municipal wastewater treatment plants (WWTPs) to evaluate carbon, nitrogen, and phosphorus removal has become a standard in many countries. Microbial removal or load estimation at municipal WWTPs, however, is still based on manually recovered grab samples. The goal of this study was to establish basic knowledge regarding the persistence of standard bacterial fecal indicators and Bacteroidetes genetic microbial source tracking markers in municipal wastewater in order to evaluate their suitability for automated sampling, as the potential lack of persistence is the main argument against such procedures. Raw and secondary treated wastewater of municipal origin from representative and well-characterized biological WWTPs without disinfection (organic carbon and nutrient removal) was investigated in microcosm experiments at 5 and 21°C with a total storage time of 32 h (including a 24-h autosampling component and an 8-h postsampling phase). Vegetative Escherichia coli and enterococci, as well as Clostridium perfringens spores, were selected as indicators for cultivation-based standard enumeration. Molecular analysis focused on total (AllBac) and human-associated genetic Bacteroidetes (BacHum-UCD, HF183 TaqMan) markers by using quantitative PCR, as well as 16S rRNA gene-based next-generation sequencing. The microbial parameters showed high persistence in both raw and treated wastewater at 5°C under the storage conditions used. Surprisingly, and in contrast to results obtained with treated wastewater, persistence of the microbial markers in raw wastewater was also high at 21°C. On the basis of our results, 24-h autosampling procedures with 5°C storage conditions can be recommended for the investigation of fecal indicators or Bacteroidetes genetic markers at municipal WWTPs. Such autosampling procedures will contribute to better understanding and monitoring of municipal WWTPs as sources of fecal pollution in water resources.
机译:由于原始市政废水的昼夜水质波动很大,因此在许多国家/地区,市政污水处理厂(WWTP)在24小时内使用比​​例自动采样来评估碳,氮和磷的去除已成为标准。但是,市政污水处理厂的微生物去除或负荷估算仍基于手动回收的抓斗样本。这项研究的目的是建立关于标准废水中细菌粪便指标和拟杆菌基因微生物来源跟踪标记的持久性的基础知识,以评估其对自动采样的适用性,因为持久性潜在的缺乏是反对这种做法的主要论据。程序。在5和21°C的缩影实验中研究了未经消毒(有机碳和养分去除)的代表性且特征明确的生物废水处理厂的市政原水和二级处理废水,总存储时间为32小时(包括24小时)自动采样组件和8小时后采样阶段)。选择营养性大肠杆菌和肠球菌以及产气荚膜梭状芽胞杆菌的芽孢作为基于培养的标准计数的指标。分子分析通过定量PCR以及基于16S rRNA基因的下一代测序,着重于总(AllBac)和人类相关遗传拟杆菌(BacHum-UCD,HF183 TaqMan)标记。在所用的存储条件下,微生物参数在5°C下对原废水和处理过的废水均具有很高的持久性。出乎意料的是,与经处理的废水获得的结果相反,未加工废水中微生物标记物的持久性在21°C时也很高。根据我们的结果,可以建议在5°C的储存条件下进行24小时自动采样,以调查市政污水处理厂的粪便指标或拟杆菌属遗传标记。这种自动采样程序将有助于更好地理解和监测作为污水中粪便污染源的市政污水处理厂。

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