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Probabilistic Models to Predict the Growth Initiation Time for Pseudomonas spp. in Processed Meats Formulated with NaCl and NaNO2

机译:预测假单胞菌生长起始时间的概率模型。 NaCl和NaNO2配制的加工肉中的含量

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摘要

This study developed probabilistic models to determine the initiation time of growth of Pseudomonas spp. in combinations with NaNO2 and NaCl concentrations during storage at different temperatures. The combination of 8 NaCl concentrations (0, 0.25, 0.5, 0.75, 1, 1.25, 1.5, and 1.75%) and 9 NaNO2 concentrations (0, 15, 30, 45, 60, 75, 90, 105, and 120 ppm) were prepared in a nutrient broth. The medium was placed in the wells of 96-well microtiter plates, followed by inoculation of a five-strain mixture of Pseudomonas in each well. All microtiter plates were incubated at 4, 7, 10, 12, and 15℃ for 528, 504, 504, 360 and 144 h, respectively. Growth (growth initiation; GI) or no growth was then determined by turbidity every 24 h. These growth response data were analyzed by a logistic regression to produce growtho growth interface of Pseudomonas spp. and to calculate GI time. NaCl and NaNO2 were significantly effective (p<0.05) on inhibiting Pseudomonas spp. growth when stored at 4-12℃. The developed model showed that at lower NaCl concentration, higher NaNO2 level was required to inhibit Pseudomonas growth at 4-12℃. However, at 15℃, there was no significant effect of NaCl and NaNO2. The model overestimated GI times by 58.2±17.5 to 79.4±11%. These results indicate that the probabilistic models developed in this study should be useful in calculating the GI times of Pseudomonas spp. in combination with NaCl and NaNO2 concentrations, considering the over-prediction percentage.
机译:这项研究开发了概率模型,以确定假单胞菌的生长起始时间。在不同温度下储存期间与NaNO2和NaCl浓度组合使用。 8种NaCl浓度(0、0.25、0.5、0.75、1、1.25、1.5和1.75%)和9种NaNO2浓度(0、15、30、45、60、75、90、105和120 ppm)的组合在营养肉汤中准备。将培养基置于96孔微量滴定板的孔中,然后在每个孔中接种五株假单胞菌混合物。所有微量滴定板分别在4、7、10、12和15℃下孵育528、504、504、360和144小时。然后每24小时通过浊度确定生长(生长开始; GI)或无生长。通过logistic回归分析这些生长响应数据以产生假单胞菌属物种的生长/无生长界面。并计算GI时间。 NaCl和NaNO2在抑制假单胞菌上有显着效果(p <0.05)。在4-12℃保存时生长。建立的模型表明,在较低的NaCl浓度下,需要较高的NaNO2水平才能抑制4-12℃的假单胞菌生长。但是,在15℃时,NaCl和NaNO2没有明显的作用。该模型将GI时间高估了58.2±17.5至79.4±11%。这些结果表明,本研究中开发的概率模型应可用于计算假单胞菌的胃肠道时间。考虑到过高的预测百分比,请与NaCl和NaNO2的浓度结合使用。

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