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Application of 5′-Nuclease PCR for Quantitative Detection of Listeria monocytogenes in Pure Cultures Water Skim Milk and Unpasteurized Whole Milk

机译:5-核酸酶PCR在纯培养物水脱脂牛奶和未经巴氏消毒的全脂牛奶中单核细胞增生李斯特菌的定量检测中的应用

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摘要

PCR techniques have significantly improved the detection and identification of bacterial pathogens. Countless adaptations and applications have been described, including quantitative PCR and the latest innovation, real-time PCR. In real-time PCR, e.g., the 5′-nuclease chemistry renders the automated and direct detection and quantification of PCR products possible (P. M. Holland et al., Proc. Natl. Acad. Sci. USA 88:7276–7280, 1991). We present an assay for the quantitative detection of Listeria monocytogenes based on the 5′-nuclease PCR using a 113-bp amplicon from the listeriolysin O gene (hlyA) as the target. The assay was positive for all isolates of L. monocytogenes tested (65 isolates including the type strain) and negative for all other Listeria strains (16 isolates from five species tested) and several other bacteria (18 species tested). The application of 5′-nuclease PCR in diagnostics requires a quantitative sample preparation step. Several magnetic bead-based strategies were evaluated, since these systems are simple and relatively easy to automate. The combination of nonspecific binding of bacteria to paramagnetic beads, with subsequent DNA purification by use of the same beads, gave the most satisfactory result. The detection limit was approximately 6 to 60 CFU, quantification was linear over at least 7 log units, and the method could be completed within 3 h. In conclusion, a complete quantitative method for L. monocytogenes in water and in skimmed and raw milk was developed.
机译:PCR技术已大大改善了细菌病原体的检测和鉴定。已经描述了无数的改编和应用,包括定量PCR和最新创新的实时PCR。在实时PCR中,例如5'核酸酶化学方法可以自动,直接检测和定量PCR产物(PM Holland等,美国国家科学院院刊88:7276-7280,1991) 。我们提出了一种基于5'-核酸酶PCR的单核细胞增生李斯特氏菌定量检测的方法,使用来自李斯特菌溶血素O基因(hlyA)的113 bp扩增子作为靶标。该方法对所有测试的单核细胞增生李斯特菌分离株均为阳性(65个分离株,包括类型菌株),对所有其他李斯特菌菌株(16个来自五个物种的分离株)和其他几种细菌(18个物种)均为阴性。 5'-核酸酶PCR在诊断中的应用需要定量的样品制备步骤。由于这些系统简单且相对易于自动化,因此评估了几种基于磁珠的策略。细菌与顺磁性微珠的非特异性结合以及随后使用相同微珠的DNA纯化相结合,可提供最令人满意的结果。检测限约为6至60 CFU,定量至少在7 log个单位上呈线性,该方法可在3 h内完成。总之,开发了一种完整的定量方法,用于检测水中以及脱脂和生乳中的单核细胞增生李斯特菌。

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