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Effect of heat shock and recovery temperature on variability of single cell lag time of Cronobacter turicensis

机译:热激和恢复温度对土小肠克氏杆菌单细胞滞后时间变异性的影响

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摘要

The effect of heat stress and subsequent recovery temperature on the individual cellular lag of Cronobacter turicensis was analysed using optical density measurements. Low numbers of cells were obtained through serial dilution and the time to reach an optical density of 0.035 was determined. Assuming the lag of a single cell follows a shifted Gamma distribution with a fixed shape parameter, the effect of recovery temperature on the individual lag of untreated and sublethally heat treated cells of Cr. turicensis were modelled. It was found that the shift parameter (T_(shift)) increased asymptotically as the temperature decreased while the logarithm of the scale parameter (θ) decreased linearly with recovery temperature. To test the validity of the model in food, growth of low numbers of untreated and heat treated Cr. turicensis in artificially contaminated infant first milk was measured experimentally and compared with predictions obtained by Monte Carlo simulations. Although the model for untreated cells slightly underestimated the actual growth in first milk at low temperatures, the model for heat treated cells was in agreement with the data derived from the challenge tests and provides a basis for reliable quantitative microbiological risk assessments for Cronobacter spp. in infant milk.
机译:使用光密度测量法分析了热应激和随后的恢复温度对turoensis克氏杆菌单个细胞滞后的影响。通过连续稀释获得少量细胞,并确定达到0.035光密度的时间。假设单个电池的滞后遵循具有固定形状参数的偏移Gamma分布,则恢复温度对Cr的未处理和经亚致命热处理的电池的单个滞后的影响。 turicensis被建模。发现随着温度降低,位移参数(T_(shift))渐近增加,而比例参数(θ)的对数随恢复温度线性降低。为了测试该模型在食品中的有效性,需要处理少量未处理和热处理的铬。实验测量了人工污染的婴儿第一奶中的三聚尿嘧啶,并将其与通过蒙特卡洛模拟获得的预测进行了比较。尽管未经处理的细胞模型略微低估了低温下第一乳的实际生长,但是经过热处理的细胞模型与挑战试验得出的数据一致,并为克罗诺杆菌属菌种进行可靠的定量微生物风险评估提供了基础。在婴儿牛奶中。

著录项

  • 来源
    《Food microbiology》 |2015年第febaptab期|195-204|共10页
  • 作者单位

    Faculty of Life Sciences and Computing, London Metropolitan University, 166-220 Holloway Road, London N7 8DB, United Kingdom;

    Institute of Food Research, Norwich Research Park, Norwich NR4 7UA, United Kingdom;

    Faculty of Life Sciences and Computing, London Metropolitan University, 166-220 Holloway Road, London N7 8DB, United Kingdom;

    School of Science and Technology, Nottingham Trent University, Clifton Lane, Nottingham NG11 8NS, United Kingdom;

    Microbiology Research Unit, Faculty of Life Sciences and Computing, London Metropolitan University, 166-220 Holloway Road, London N7 8DB, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cronobacter spp.; Individual lag; Sublethal heat stress;

    机译:克罗诺杆菌属;个人滞后;亚致死热应力;

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