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Screening Growth Substrates of E.coli by Monitoring Changes in Dissolved Organic Matter Composition in Sterilized River Water

机译:通过监测灭菌河水中溶解有机物组成的变化筛选大肠杆菌的生长底物

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摘要

Escherichia coli is prevalently used as an indicator of fecal pollution in environmental waters. However, it is reported that E.coli has a potential to grow in environmental waters under quite low dissolved organic matter (DOM) concentration conditions. DOM which supports E.coli growth in environmental waters remain unknown. In this study, growth substrates of E.coli were screened by monitoring the removal of DOM after E.coli growth in a sterilized river water. Sterilization methods were also assessed. The sample was taken from Tama River in April 2017, sterilized by filtration with 0.02 µm track-etched membrane and pasteurized at 75℃ for 1 hour. E.coli K-12 was inoculated to the sterilized water and incubated under dark condition at 25℃ for a few days. The DOM compositions right after sampling, filtration, pasteurization and incubation with and without E.coli inoculation were analyzed using a Orbitrap mass spectrometer. E.coli grew up to 1×10~6 CFU/mL in both filter-sterilized and heat-pasteurized samples and there were no significant differences. The sterilization processes partly affected the DOM compositions, but no new compounds were detected. The compounds reduced only after E.coli growth should be the candidates of the growth substrates and subjected to further confirmation.
机译:大肠杆菌普遍用作环境水域粪便污染的指标。但是,据报道,在非常低的溶解有机物(DOM)浓度条件下,大肠杆菌有可能在环境水中生长。支持环境水中大肠杆菌生长的DOM仍然未知。在这项研究中,通过监测灭菌河水中大肠杆菌生长后DOM的去除情况来筛选大肠杆菌的生长底物。还评估了灭菌方法。样品于2017年4月从多摩河(Tama River)采集,通过0.02 µm径迹蚀刻膜过滤灭菌,并在75℃下巴氏灭菌1小时。将大肠杆菌K-12接种到无菌水中,并在黑暗条件下于25℃温育几天。使用Orbitrap质谱仪分析取样,过滤,巴氏灭菌和在有无大肠杆菌接种后孵育后的DOM组成。过滤器灭菌和热巴氏灭菌的样品中大肠杆菌的生长速度高达1×10〜6 CFU / mL,两者之间无显着差异。灭菌过程部分影响了DOM的成分,但未检测到新的化合物。仅在大肠杆菌生长后才还原的化合物应作为生长底物的候选物,并进行进一步确认。

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  • 会议地点 Sapporom(JP)
  • 作者单位

    Department of Urban Engineering, the University of Tokyo, Tokyo 113-8656 Japan;

    Research Center for Water Environment Technology, the University of Tokyo, Tokyo 113-8656 Japan;

    Department of Urban Engineering, the University of Tokyo, Tokyo 113-8656 Japan;

    Research Center for Water Environment Technology, the University of Tokyo, Tokyo 113-8656 Japan;

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