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首页> 外文期刊>Food microbiology >Optimization of heat and relative humidity conditions to reduce Escherichia coli O157:H7 contamination and maximize the germination of radish seeds
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Optimization of heat and relative humidity conditions to reduce Escherichia coli O157:H7 contamination and maximize the germination of radish seeds

机译:优化热量和相对湿度条件,以减少大肠杆菌O157:H7污染并最大限度地提高萝卜种子的发芽率

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摘要

We previously reported that a combination of heat and relative humidity (RH) had a marked bactericidal effect on Escherichia coli O157:H7 on radish seeds. Here, response surface methodology with a Box-Behnken design was used to build a model to predict reductions in E. coli O157:H7 populations based on three independent variables: heating temperature (55 ℃, 60 ℃, or 65 ℃), RH (40%, 60%, and 80%), and holding time (8, 15, or 22 h). Optimum treatment conditions were selected using a desirability function. The predictive model for microbial reduction had a high regression coefficient (R~2 = 0.97), and the accuracy of the model was verified using validation data (R~2 = 0.95). Among the three variables examined, heating temperature (P < 0.0001) and RH (P = 0.004) were the most significant in terms of bacterial reduction and seed germination, respectively. The optimum conditions for microbial reduction (6.6 log reduction) determined by ridge analysis were as follows: 64.5 ℃ and 63.2% RH for 17.7 h. However, when both microbial reduction and germination rate were taken into consideration, the desirability function yielded optimal conditions of 65 ℃ and 40% RH for 8 h (6.6 log reduction in the bacterial population; 94.4% of seeds germinated). This study provides comprehensive data that improve our understanding of the effects of heating temperature, RH, and holding time on the E. coli O157:H7 population on radish seeds. Radish seeds can be exposed to these conditions before sprouting, which greatly increases the microbiological safety of the products.
机译:我们之前曾报道过,热量和相对湿度(RH)的结合对萝卜种子上的大肠杆菌O157:H7具有明显的杀菌作用。在这里,采用Box-Behnken设计的响应面方法建立了一个模型,该模型基于三个独立变量来预测大肠杆菌O157:H7种群的减少:加热温度(55℃,60℃或65℃),RH( 40%,60%和80%)和保持时间(8、15或22小时)。使用期望函数选择最佳治疗条件。微生物减少的预测模型具有较高的回归系数(R〜2 = 0.97),并且使用验证数据验证了模型的准确性(R〜2 = 0.95)。在所考察的三个变量中,就细菌减少和种子发芽而言,加热温度(P <0.0001)和相对湿度(P = 0.004)最显着。通过垄分析确定的微生物还原的最佳条件(6.6 log降低)如下:64.5℃和63.2%RH持续17.7 h。然而,当同时考虑微生物减少和发芽率时,理想的功能在65℃和40%RH的条件下产生了8小时的最佳条件(细菌种群减少6.6log;发芽的种子为94.4%)。这项研究提供了全面的数据,可以增进我们对加热温度,相对湿度和保温时间对萝卜种子上大肠杆菌O157:H7种群的影响的了解。萝卜种子可以在发芽前暴露于这些条件下,这大大提高了产品的微生物学安全性。

著录项

  • 来源
    《Food microbiology》 |2016年第6期|14-20|共7页
  • 作者

    M.K. Song; H.W. Kim; M.S. Rhee;

  • 作者单位

    Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, Seoul 02841, South Korea;

    Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, Seoul 02841, South Korea;

    Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, 5-1 Anam-dong, Sungbuk-gu, Seoul 02841, South Korea;

  • 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

    Response surface methodology; Desirability function; Heat and relative humidity; Seed decontamination; Optimization;

    机译:响应面方法;期望功能;热量和相对湿度;种子去污;优化;

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