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开发并验证了预测模型,以研究储存温度和 pH 值对嗜酸耐热菌(Alicyclobacillus acidoterrestris ATCC 49025)在果汁饮料中生长界限和动力学的影响。

Development and validation of predictive models for the effect of storage temperature and pH on the growth boundaries and kinetics of Alicyclobacillus acidoterrestris ATCC 49025 in fruit drinks.

机构信息

Laboratory of Food Microbiology and Hygiene, Department of Food Science and Technology, School of Agriculture, Faculty of Agriculture, Forestry and Natural Environment, Aristotle University of Thessaloniki, Thessaloniki 54124, Greece.

Department of Molecular Microbiology, Quality Assurance Division, Delta Foods S.A., 23rd km National Road Athens-Lamia, 145 65 Agios Stefanos, Greece.

出版信息

Food Microbiol. 2018 Sep;74:40-49. doi: 10.1016/j.fm.2018.02.019. Epub 2018 Feb 28.

Abstract

This study was undertaken to provide quantitative tools for predicting the behavior of the spoilage bacterium Alicyclobacillus acidoterrestris ATCC 49025 in fruit drinks. In the first part of the study, a growth/no growth interface model was developed, predicting the probability of growth as a function of temperature and pH. For this purpose, the growth ability of A. acidoterrestris was studied at different combinations of temperature (15-45 °C) and pH (2.02-5.05). The minimum pH and temperature where growth was observed was 2.52 (at 35 and 45 °C) and 25 °C (at pH ≥ 3.32), respectively. Then a logistic polynomial regression model was fitted to the binary data (0: no growth, 1: growth) and, based on the concordance index (98.8%) and the Hosmer-Lemeshow statistic (6.226, P = 0.622), a satisfactory goodness of fit was demonstrated. In the second part of the study, the effects of temperature (25-55 °C) and pH (3.03-5.53) on A. acidoterrestris growth rate were investigated and quantitatively described using the cardinal temperature model with inflection and the cardinal pH model, respectively. The estimated values for the cardinal parameters T, T, T and pH, pH, pH were 18.11, 55.68, 48.60 °C and 2.93, 5.90, 4.22, respectively. The developed models were validated against growth data of A. acidoterrestris obtained in eight commercial pasteurized fruit drinks. The validation results showed a good performance of both models. In all cases where the growth/no growth interface model predicted a probability lower than 0.5, A. acidoterrestris was, indeed, not able to grow in the tested fruit drinks; similarly, when the model predicted a probability above 0.9, growth was observed in all cases. A good agreement was also observed between growth predicted by the kinetic model and the observed kinetics of A. acidoterrestris in fruit drinks at both static and dynamic temperature conditions.

摘要

本研究旨在为预测腐败菌嗜酸耐热菌(Alicyclobacillus acidoterrestris ATCC 49025)在果汁饮料中的行为提供定量工具。在研究的第一部分,开发了一个生长/不生长界面模型,预测了温度和 pH 值作为函数的生长概率。为此,研究了 A. acidoterrestris 在不同温度(15-45°C)和 pH 值(2.02-5.05)组合下的生长能力。观察到生长的最低 pH 值和温度分别为 2.52(在 35 和 45°C)和 25°C(在 pH 值≥3.32 时)。然后,对二进制数据(0:不生长,1:生长)进行了逻辑多项式回归模型拟合,基于一致性指数(98.8%)和 Hosmer-Lemeshow 统计量(6.226,P=0.622),显示出良好的拟合优度。在研究的第二部分,研究了温度(25-55°C)和 pH 值(3.03-5.53)对 A. acidoterrestris 生长速率的影响,并分别使用具有拐点的 cardinal 温度模型和 cardinal pH 模型对其进行了定量描述。估计的 cardinal 参数 T、T、T 和 pH、pH、pH 值分别为 18.11、55.68、48.60°C 和 2.93、5.90、4.22。所开发的模型在八个商业化巴氏杀菌果汁饮料中获得的 A. acidoterrestris 生长数据上进行了验证。验证结果表明,两种模型的性能都很好。在生长/不生长界面模型预测的概率低于 0.5 的所有情况下,A. acidoterrestris 确实无法在测试的果汁饮料中生长;同样,当模型预测的概率高于 0.9 时,所有情况下都观察到了生长。在静态和动态温度条件下,动力学模型预测的生长与 A. acidoterrestris 在果汁饮料中的观察到的动力学之间也观察到了很好的一致性。

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