DVC-FISH方法在饮用水配网大肠杆菌追踪中的应用

Q2 Engineering
L. Mezule, S. Larsson, T. Juhna
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引用次数: 13

摘要

摘要用分子方法在饮用水和生物膜中零星检测到活的(活的)大肠杆菌,但没有使用标准平板计数,这引起了人们对这一指标在饮用水安全监测中的可靠性的关注。本研究的目的是确定不同存活形式的大肠杆菌在符合欧洲饮用水指令(98/83/EC)的饮用水分配系统中的空间分布。在两年的时间里,从处理厂和分布在不同距离的分配网络中的四个地点收集了两周的水券和预浓缩的水样(使用超滤器进行了100次浓缩)。对样品进行总、活菌(可分为DVC-FISH阳性)和可培养大肠杆菌的分析。结果表明,从污水处理厂进入配水系统的大肠杆菌数量较少,并倾向于在配水系统的生物膜中积累。几乎所有样品都含有代谢活跃的大肠杆菌,每升或每平方厘米1至50个细胞,约占所有检测到的大肠杆菌的53%。无论季节如何,进入网络的活大肠杆菌数量显著增加。研究表明,DVC-FISH方法结合水预浓缩和生物膜取样,可以更好地了解配水网络中大肠杆菌的行为,从而为水安全控制提供新的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of DVC-FISH method in tracking Escherichia coli in drinking water distribution networks
Abstract. Sporadic detection of live (viable) Escherichia coli in drinking water and biofilm with molecular methods but not with standard plate counts has raised concerns about the reliability of this indicator in the surveillance of drinking water safety. The aim of this study was to determine spatial distribution of different viability forms of E. coli in a drinking water distribution system which complies with European Drinking Water Directive (98/83/EC). For two years coupons (two week old) and pre-concentrated (100 times with ultrafilters) water samples were collected after treatment plants and from four sites in the distribution network at several distances. The samples were analyzed for total, viable (able to divide as DVC-FISH positive) and cultivable E. coli. The results showed that low numbers of E. coli enters the distribution sytem from the treatment plants and tend to accumulate in the biofilm of water distribution system. Almost all of the samples contained metabolically active E. coli in the range of 1 to 50 cells per litre or cm2 which represented approximately 53% of all E. coli detected. The amount of viable E. coli significantly increased into the network irrespective of the season. The study has shown that DVC-FISH method in combination with water pre-concentration and biofilm sampling allows to better understand the behaviour of E. coli in water distribution networks, thus, it provides new evidences for water safety control.
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来源期刊
Drinking Water Engineering and Science
Drinking Water Engineering and Science Environmental Science-Water Science and Technology
CiteScore
3.90
自引率
0.00%
发文量
3
审稿时长
40 weeks
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