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基于最大可能数法的水样异养细菌自动测量与定量。

Automated measurement and quantification of heterotrophic bacteria in water samples based on the MPN method.

机构信息

Institute for Environmental Biotechnology, Department for Agrobiotechnology, IFA-Tulln, University of Natural Resources and Applied Life Sciences, Vienna, Austria.

出版信息

J Ind Microbiol Biotechnol. 2011 Jan;38(1):241-7. doi: 10.1007/s10295-010-0819-1. Epub 2010 Sep 12.

Abstract

Quantification of heterotrophic bacteria is a widely used measure for water analysis. Especially in terms of drinking water analysis, testing for microorganisms is strictly regulated by the European Drinking Water Directive, including quality criteria and detection limits. The quantification procedure presented in this study is based on the most probable number (MPN) method, which was adapted to comply with the need for a quick and easy screening tool for different kinds of water samples as well as varying microbial loads. Replacing tubes with 24-well titer plates for cultivation of bacteria drastically reduces the amount of culture media and also simplifies incubation. Automated photometric measurement of turbidity instead of visual evaluation of bacterial growth avoids misinterpretation by operators. Definition of a threshold ensures definite and user-independent determination of microbial growth. Calculation of the MPN itself is done using a program provided by the US Food and Drug Administration (FDA). For evaluation of the method, real water samples of different origins as well as pure cultures of bacteria were analyzed in parallel with the conventional plating methods. Thus, the procedure described requires less preparation time, reduces costs and ensures both stable and reliable results for water samples.

摘要

异养菌定量分析是一种广泛应用于水质分析的方法。特别是在饮用水分析方面,欧洲饮用水指令对微生物检测有严格的规定,包括质量标准和检测限。本研究中提出的定量程序基于最可能数(MPN)方法,该方法经过适应性改进,可用于不同类型水样和不同微生物负荷的快速简便筛选。用 24 孔微量滴定板代替试管进行细菌培养可大大减少培养基的用量,并简化孵育过程。用浊度的自动光度测量代替细菌生长的目视评估可避免操作人员的误判。定义阈值可确保对微生物生长进行明确且用户独立的测定。MPN 的计算使用美国食品和药物管理局(FDA)提供的程序完成。为了评估该方法,用传统的平板培养法对不同来源的实际水样和纯培养细菌进行了平行分析。因此,所描述的方法需要更少的准备时间,降低成本,并确保水样得到稳定可靠的结果。

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