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Modelling and predicting the simultaneous growth of Escherichia coli and lactic acid bacteria in milk

机译:建模和预测牛奶中大肠杆菌和乳酸菌的同时生长

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Modelling and predicting the simultaneous competitive growth of Escherichia coli and starter culture of lactic acid bacteria (Fresco 1010, Chr. Hansen, HOrsholm, Denmark) was studied in milk at different temperatures and Fresco inoculum concentrations. The lactic acid bacteria (LAB) were able to induce an early stationary state in E. coli. The developed model described and tested the growth inhibition of E. coli (with initial inoculum concentration 10(3) CFU/mL) when LAB have reached maximum density in different conditions of temperature (ranging from 12? to 30?) and for various inoculum sizes of LAB (ranging from approximately 10(3) to 10(7) CFU/mL). The prediction ability of the microbial competition model (the Baranyi and Roberts model coupled with the Gimenez and Dalgaard model) was first performed only with parameters estimated from individual growth of E. coli and the LAB and then with the introduced competition coefficients evaluated from co-culture growth of E. coli and LAB in milk. Both the results and their statistical indices showed that the model with incorporated average values of competition coefficients improved the prediction of E. coli behaviour in co-culture with LAB.
机译:在牛奶中,在不同的温度和壁画接种浓度下,对大肠杆菌的竞争性增长和乳酸菌(Fresco 1010,Chr。Hansen,Horsholm,丹麦)的发酵菌培养的同时建模和预测进行了研究。乳酸菌(LAB)能够在大肠杆菌中诱导早期的静止状态。开发的模型描述并测试了当LAB在不同温度条件下(从12?到30?)和各种接种物达到最大密度时,大肠杆菌的生长抑制(初始接种物浓度为10(3)CFU / mL)。 LAB的大小(大约10(3)至10(7)CFU / mL)。微生物竞争模型(Baranyi和Roberts模型以及Gimenez和Dalgaard模型结合)的预测能力首先仅根据从大肠杆菌和LAB的个体生长中估算出的参数来进行,然后根据引入的竞争系数评估引入的竞争系数。在牛奶中培养大肠杆菌和乳酸菌。结果及其统计指标均表明,结合竞争系数平均值的模型改善了与LAB共培养的大肠杆菌行为的预测。

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