基于绿色荧光蛋白的冷鲜猪肉中大肠杆菌预测模型的构建
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国家自然基金面上项目(项目编号31972043)


Construction of the prediction model for Escherichia coli in chilled pork using green fluorescent protein
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    摘要:

    为了预测和监控冷鲜猪肉储存过程中腐败细菌大肠杆菌的变化规律,评估产品货架期,建立微生物生长预测模型。该研究将绿色荧光蛋白质粒pGFP转入大肠杆菌DH5α,构建GFP的标记大肠杆菌。基于绿色荧光蛋白报告基因和氨苄青霉素抗性,采用稀释平板法定量追踪检测0~24 ℃条件下冷鲜猪肉中DH5α生长变化。采用Gompertz模型、平方根模型和响应面方程进行数据拟合,构建数学预测模型。结果表明Gompertz模型拟合效果良好,0~20 ℃条件下决定系数R2为0.96~0.99。温度与最大比生长速率平方根、延迟期倒数平方根模型R2分别为0.862、0.948。响应面模型揭示时间、温度对大肠杆菌的生长影响显著(P<0.05),二者交互作用明显,响应面模型R2为0.815。模型能够有效拟合冷鲜猪肉中与温度、时间相关的大肠杆菌的生长变化规律,研究结果为产品储存过程中细菌变化预测提供理论依据。

    Abstract:

    Predicting dynamic changes of microorganisms can contribute to the rapid assessment of food safety for the shelf life in food prediction. Escherichia coli originated from human or animal intestines are the main spoilage bacteria in fresh and chilled meat products. It is highly demanding to predict and monitor the changes of E.coli in the chilled pork to ensure the safety and quality of food products. In this study, the green fluorescent protein plasmid (pGFP) with ampicillin resistance was transferred into Escherichia coli DH5ɑ by chemical transformation, thereby to construct a GFP labeled E.coli DH5ɑ strain. After quantitative inoculation of labeled strain in the chilled pork that was simply mechanically mashed, the dilution plate was used to detect the growth of E. coli at different temperatures, using the GFP reporter gene and ampicillin resistance. The Gompertz model, the square root model, and the response surface equation were used to fit the number of bacteria, further to construct a mathematical prediction model. The results showed that the Gompertz model had a good fitting effect on Escherichia coli in fresh pork, where the determination coefficient R2 were 0.96-0.99 at 0-20℃, and 0.79 at 24℃, respectively. The Gompertz model indicated that the growth of Escherichia coli was very slow in the cold fresh pork at 0-8℃, and the lag phase duration (LPD) was over 40 h. It inferred that the growth rate of E.coli was significantly inhibited by the temperature, when the storage temperature of fresh pork was lower than 8℃. The two square root models had good fitting effects, which described the relationship between temperature and the square root of the maximum specific growth rate, and the relationship between temperature and the square root of reciprocal of LPD, where the determination coefficient R2 were 0.862 and 0.948, respectively. The response surface model demonstrated that there were significant effects of time and temperature on the growth of E.coli in fresh pork, where the interaction between the two factors was significant (P<0.05), with the R2 of 0.815. In the verification test, the prediction model revealed that the bias factor (Bf) and accuracy factor (Af) were close to 1, indicating high accuracy and adaptability of the model. These models could effectively fit the growth rule of Escherichia coli in the chilled pork, providing a sound theoretical basis to predict bacterial change during product storage.

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刘变芳,胡辉帆,张义奎,蔡锦,杜双奎,李俊丽,曹梦茜,吕欣.基于绿色荧光蛋白的冷鲜猪肉中大肠杆菌预测模型的构建[J].农业工程学报,2021,37(1):299-305. DOI:10.11975/j. issn.1002-6819.2021.01.035

Liu Bianfang, Hu Huifan, Zhang Yikui, Cai Jin, Du Shuangkui, Li Junli, Cao Mengqian, Lyu Xin. Construction of the prediction model for Escherichia coli in chilled pork using green fluorescent protein[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE),2021,37(1):299-305. DOI:10.11975/j. issn.1002-6819.2021.01.035

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  • 收稿日期:2020-09-10
  • 最后修改日期:2020-12-15
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  • 在线发布日期: 2021-01-20
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