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Real-Time PCR Method for Quantification of Staphylococcus aureus in Milk

机译:实时PCR定量牛奶中金黄色葡萄球菌

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A reproducible real-time PCR method that targets the putative transcriptional regulator gene of Staphylococcus aureus was developed to quantify this microorganism in milk samples. On the basis of partial sequences of this gene determined from 5. aureus strains, we designed the specific primers and probe for use in a quantitative PCR assay. These specificities were confirmed with 25 strains of S. aureus and 35 strains of other bacteria. A real-time PCR assay with serial 10-fold dilutions of purified DNA and pure culture was conducted. It was possible to construct standard curves with a high correlation coefficient (r~2 = 0.99) in the range of 50 ng to 50 fg for purified DNA and 10~7 to 10~1 CFU/ml for a pure culture. The constructed standard curve for milk samples was similar to that for the pure culture, and the quantification of S. aureus in the range of 10~7 to 10~1 CFU/ml was possible. Moreover, to determine how our real-time PCR method would perform under actual analytical conditions, we quantified the DNA from S. aureus after two types of heat treatments were used for the pasteurization of milk. The amount of DNA found was affected after heat treatment at 63℃ for 30 min (low-temperature long-time method) but not at 72℃ for 15 s (high-temperature short-time method). The results indicate that the real-time PCR method developed in this study is effective for monitoring S. aureus contamination in milk because of its high specificity and sensitivity.
机译:开发了一种可重复的实时PCR方法,该方法以金黄色葡萄球菌的假定转录调节基因为靶标,以定量牛奶样品中的这种微生物。根据从5.金黄色葡萄球菌菌株确定的该基因的部分序列,我们设计了用于定量PCR分析的特异性引物和探针。用25株金黄色葡萄球菌和35株其他细菌证实了这些特异性。使用连续10倍的纯化DNA和纯培养物稀释液进行实时PCR分析。对于纯化的DNA,可能在50 ng至50 fg的范围内构建具有高相关系数(r〜2 = 0.99)的标准曲线,而对于纯培养物,则可在10〜7至10〜1 CFU / ml的范围内构建标准曲线。牛奶样品的标准曲线与纯培养物的标准曲线相似,金黄色葡萄球菌的定量范围为10〜7至10〜1 CFU / ml。此外,为了确定我们的实时PCR方法在实际分析条件下的性能,我们将两种热处理方法用于牛奶的巴氏灭菌后,对金黄色葡萄球菌的DNA进行了定量。在63℃(低温长时间方法)热处理30分钟后发现的DNA量受到影响,而在72℃(高温短时间方法)热处理15 s后发现的DNA数量受到影响。结果表明,本研究开发的实时PCR方法具有很高的特异性和敏感性,可有效监测牛奶中的金黄色葡萄球菌污染。

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