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首页> 外文期刊>Applied Biological Chemistry >Real-time PCR-based quantification of Shigella sonnei in beef and a modified Gompertz equation-based predictive modeling of its growth
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Real-time PCR-based quantification of Shigella sonnei in beef and a modified Gompertz equation-based predictive modeling of its growth

机译:基于实时荧光定量PCR的牛肉中志贺氏菌定量及其改良的基于Gompertz方程的生长预测模型

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摘要

Shigella sonnei shares many physiological aspects with Escherichia coli; thus, so far no culture-based method has been developed to detect and quantify S. sonnei separately from E. coli. Therefore, little information is available for the growth characteristics of S. sonnei in food. This study aimed to address a systematic scheme to quantify S. sonnei in beef separately from E. coli using quantitative real-time polymerase chain reaction (qRT-PCR) and subsequently predict its growth characteristics. The use of S. sonnei-specific primers in qRT-PCR allowed to obtain growth curves of S. sonnei in beef at different temperatures, and the fitting of curves into a modified Gompertz model let us analyze the growth characteristics such as the lag time, maximum growth rate, and maximum quantity of S. sonnei in beef at different temperatures. A systematic scheme for RT-PCR-based quantification and a predictive modeling described in this study may be a useful means to analyze S. sonnei growth in food.
机译:痢疾志贺氏菌与大肠埃希氏菌有许多生理方面的关系。因此,迄今为止,尚未开发出基于培养物的方法来与大肠杆菌分开检测和定量S. sonnei。因此,关于食物中S.sonnei的生长特性的信息很少。这项研究旨在解决使用定量实时聚合酶链反应(qRT-PCR)定量从牛肉中分离出牛肉中大肠杆菌的方法,并随后预测其生长特征。在qRT-PCR中使用S. sonnei特异性引物可以获取不同温度下牛肉中S. sonnei的生长曲线,并将曲线拟合到改良的Gompertz模型中可以让我们分析生长特性,例如滞后时间,在不同温度下牛肉的最大生长速率和最大数量的S. sonnei。本研究中描述的基于RT-PCR的定量系统方案和预测模型可能是分析食品中链球菌生长的有用手段。

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