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开发和验证一种基于荧光原位杂交(FISH)的方法,用于检测和定量水样中的大肠杆菌和大肠菌群细菌。

Development and validation of a FISH-based method for the detection and quantification of E. coli and coliform bacteria in water samples.

机构信息

DVGW-Technologiezentrum Wasser, Department of Microbiology, Karlsruhe, Germany.

出版信息

Water Sci Technol. 2011;64(7):1435-42. doi: 10.2166/wst.2011.761.

Abstract

Monitoring of microbiological contaminants in water supplies requires fast and sensitive methods for the specific detection of indicator organisms or pathogens. We developed a protocol for the simultaneous detection of E. coli and coliform bacteria based on the Fluorescence in situ Hybridization (FISH) technology. This protocol consists of two approaches. The first allows the direct detection of single E. coli and coliform bacterial cells on the filter membranes. The second approach includes incubation of the filter membranes on a nutrient agar plate and subsequent detection of the grown micro-colonies. Both approaches were validated using drinking water samples spiked with pure cultures and naturally contaminated water samples. The effects of heat, chlorine and UV disinfection were also investigated. The micro-colony approach yielded very good results for all samples and conditions tested, and thus can be thoroughly recommended for usage as an alternative method to detect E. coli and coliform bacteria in water samples. However, during this study, some limitations became visible for the single cell approach. The method cannot be applied for water samples which have been disinfected by UV irradiation. In addition, our results indicated that green fluorescent dyes are not suitable to be used with chlorine disinfected samples.

摘要

监测水源中的微生物污染物需要快速灵敏的方法来特异性检测指示生物或病原体。我们开发了一种基于荧光原位杂交(FISH)技术的同时检测大肠杆菌和大肠菌群的方案。该方案包括两种方法。第一种方法允许直接在滤膜上检测单个大肠杆菌和大肠菌群细菌细胞。第二种方法包括将滤膜在营养琼脂平板上孵育,然后检测生长的微菌落。两种方法均使用经纯培养物和自然污染水样稀释的饮用水样品进行了验证。还研究了热、氯和紫外线消毒的影响。微菌落方法对所有测试的样品和条件均产生了非常好的结果,因此可以彻底推荐作为替代方法用于检测水样中的大肠杆菌和大肠菌群。然而,在这项研究中,单细胞方法出现了一些局限性。该方法不能用于经紫外线辐射消毒的水样。此外,我们的结果表明,绿色荧光染料不适合与经氯消毒的样品一起使用。

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