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One step forwards for the routine use of high-throughput DNA sequencing in environmental monitoring. An efficient and standardizable method to maximize the detection of environmental bacteria

机译:高通量DNA测序在环境监测中的常规使用迈出了一步。一种有效且标准化的方法,可最大程度地检测环境细菌

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Abstract We propose an innovative, repeatable, and reliable experimental workflow to concentrate and detect environmental bacteria in drinking water using molecular techniques. We first concentrated bacteria in water samples using tangential flow filtration and then we evaluated two methods of environmental DNA extraction. We performed tests on both artificially contaminated water samples and real drinking water samples. The efficiency of the experimental workflow was measured through qPCR. The successful applicability of the high-throughput DNA sequencing (HTS) approach was demonstrated on drinking water samples. Our results demonstrate the feasibility of our approach in high-throughput-based studies, and we suggest incorporating it in monitoring strategies to have a better representation of the microbial community. In the recent years, HTS techniques have become key tools in the study of microbial communities. To make the leap from academic laboratories to the routine monitoring (e.g., water treatment plants laboratories), we here propose an experimental workflow suitable for the introduction of HTS as a standard method for detecting environmental bacteria.
机译:摘要我们提出了一种创新,可重复且可靠的实验流程,以利用分子技术浓缩和检测饮用水中的环境细菌。我们首先使用切向流过滤将水样中的细菌浓缩,然后评估了两种环境DNA提取方法。我们对人工污染的水样本和实际的饮用水样本进行了测试。通过qPCR测量实验工作流程的效率。高通量DNA测序(HTS)方法在饮用水样品上的成功应用得到了证明。我们的结果证明了我们的方法在基于高通量的研究中的可行性,我们建议将其纳入监测策略中,以更好地代表微生物群落。近年来,高温超导技术已成为微生物群落研究的关键工具。为了实现从学术实验室到常规监测(例如水处理厂实验室)的飞跃,我们在此提出一种适合引入HTS作为检测环境细菌的标准方法的实验工作流程。

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