阪崎克罗诺杆菌IFST082014在配方奶粉中的生长与温度的关系模型

Fakruddin, Rahaman, Hossain, M. Ahmed
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引用次数: 1

摘要

目的:阪崎克罗诺杆菌最常与新生儿疾病相关。本研究旨在模拟温度对阪崎菌分离株(IFST082014)生长的影响。方法:接种阪崎弧菌的配方奶粉(RIMFs)分别于10、20、30和40℃孵育。结果:初始模型与Gompertz方程拟合良好(r = 0.9714-0.9821),可得到各温度下的生长速率和滞后时间(LTs)。随着温度的升高,樱栗的特定生长率(SGR)升高,而LT降低。二级模型为ln SGR = -0.05879+(0.00588倍温度)+(0.00045倍温度)。利用该模型预测的SGR随温度的升高而增大。根据SGR模型的均方误差(MSE = 0.00016)、决定系数(r = 0.9845)、偏差因子(Bf = 1.0125)和精度因子(Af = 1.0007)判断该次多项式模型是否合适。结论:本研究结果具有一定的参考价值。Fakruddin et al.;植物学报,15(4):1-7,2016;文章no.BBJ。28634 2
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling Growth of Cronobacter sakazakii IFST082014 in Reconstituted Powdered Infant Milk as Function of Temperature
Aims: Cronobacter sakazakii has been associated most frequently with illness in neonates. This study aims to model effect of temperature on growth of a C. sakazakii isolate (IFST082014). Methodology: Reconstituted powdered infant milk formulas (RIMFs) inoculated with C. sakazakii were incubated at 10, 20, 30 and 40°C. Results: The primary model showed a good fit (r = 0.9714–0.9821) to a Gompertz equation to obtain growth rates and lag times (LTs) at each temperature. The specific growth rate (SGR) of C. sakazakii in the RIMF increased, and the LT decreased with increasing temperature. The secondary model was “ln SGR = -0.05879+(0.00588 x temperature)+(0.00045 x temperature).” The SGR predicted using this model increased with an increasing temperature. This secondary polynomial model was judged as appropriate based on the mean square error (MSE of the SGR model = 0.00016), the coefficient of determination (r of the SGR model = 0.9845), the bias factor (Bf of the SGR model = 1.0125) and the accuracy factor (Af of the SGR model = 1.0007). Conclusion: These results will be useful for industry and regulatory agencies. Original Research Article Fakruddin et al.; BBJ, 15(4): 1-7, 2016; Article no.BBJ.28634 2
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