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Development of Comprehensive Detection Method of Pathogenic Bacteria from River Water Combining Foam Concentration and Bacterial Flora Analysis

机译:从河水结合泡沫浓度和细菌植物群分析的河流致病菌综合检测方法

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Waterborne diseases due to pathogenic bacteria in the water environment are a serious problem all over the world. Therefore, it is extremely important to grasp the actual condition of their existences. In this study, comprehensive detection of pathogenic bacteria from river water using a combined process of foam concentration and Next Generation Sequencer (NGS) was developed. As a result of the foam concentration, the DNA in the extract of concentrate from each river water sample was detected in the range of 88-215 ng/μL. By the foam concentration, it was possible to obtain a sufficient amount of DNA extract from a river water sample for NGS analysis. When the DNA extracts from all the five rivers pass through the large cities were analyzed by the NGS, 42 genera of pathogenic bacteria were detected, and the relative abundance ratio accounted for 0.79 to 3.0% of the total bacteria. The major pathogenic bacteria were Acinetobacter, Mycobacterium, and Pseudomonas. In addition, 7 genera of pathogenic bacteria were detected at the relative abundance ratio more than 0.01%. From the above, it is possible to detect the pathogenic bacteria comprehensively from river water by combining foam concentration and bacterial flora analysis using NGS.
机译:由于水环境的病原细菌引起的水性疾病是世界各地的严重问题。因此,掌握其存在的实际条件是非常重要的。在本研究中,开发了使用泡沫浓度和下一代序列仪(NGS)的组合过程中综合检测来自河水的河流。由于泡沫浓度的结果,在88-215ng /μl的范围内检测来自每个河水样品的浓缩物提取物中的DNA。通过泡沫浓度,可以从河水样品中获得足够量的DNA提取物,用于NGS分析。当来自所有五个河流通过大城市的DNA提取物被NGS分析,检测到42种致病细菌,相对丰度占总细菌的0.79%至3.0%。主要的致病细菌是传神上的,分枝杆菌和假单胞菌。此外,在相对丰度比以大于0.01%的相对丰度比例检测到7种致病细菌。从以上,可以通过使用NGS将泡沫浓度和细菌植物分析组合来从河水中全面检测致病细菌。

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