首页> 外文期刊>Food microbiology >Modeling heat resistance of Bacillus weihenstephanensis and Bacillus licheniformis spores as function of sporulation temperature and pH
【24h】

Modeling heat resistance of Bacillus weihenstephanensis and Bacillus licheniformis spores as function of sporulation temperature and pH

机译:魏氏芽孢杆菌和地衣芽孢杆菌孢子的耐热性与成孢温度和pH的关系模型

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Although sporulation environmental factors are known to impact on Bacillus spore heat resistance, they are not integrated into predictive models used to calculate the efficiency of heating processes. This work reports the influence of temperature and pH encountered during sporulation on heat resistance of Bacillus weihenstephanensis KBAB4 and Bacillus licheniformis AD978 spores. A decrease in heat resistance (δ) was observed for spores produced either at low temperature, at high temperature or at acidic pH. Sporulation temperature and pH maximizing the spore heat resistance were identified. Heat sensitivity (z) was not modified whatever the sporulation environmental factors were. A resistance secondary model inspired by the Rosso model was proposed. Sporulation temperatures and pHs minimizing or maximizing the spore heat resistance (T_(min)(R), T_(opt)(R), T_(max)(R), pH_(min)(R) and pH_(opt)(R)) were estimated. The goodness of the model fit was assessed for both studied strains and literature data. The estimation of the sporulation temperature and pH maximizing the spore heat resistance is of great interest to produce spores assessing the spore inactivation in the heating processes applied by the food industry.
机译:尽管已知孢子形成环境因素会影响芽孢杆菌的耐热性,但它们并未集成到用于计算加热过程效率的预测模型中。这项工作报告在孢子形成过程中遇到的温度和pH值对魏氏杆菌BKB4和地衣芽孢杆菌AD978孢子的耐热性的影响。对于在低温,高温或酸性pH下产生的孢子,观察到耐热性(δ)降低。确定了使孢子耐热性最大化的造粒温度和pH。无论孢子形成环境因素如何,热敏度(z)均未改变。提出了一个受罗索模型启发的电阻二次模型。最小化或最大化孢子耐热性(T_(min)(R),T_(opt)(R),T_(max)(R),pH_(min)(R)和pH_(opt)(R)的制粒温度和pH ))进行估算。对于所研究的菌株和文献数据都评估了模型拟合的良好性。产生孢子的温度和使孢子耐热性最大化的pH的估计对于产生孢子非常重要,该孢子用于评估食品工业应用的加热过程中的孢子失活。

著录项

  • 来源
    《Food microbiology》 |2012年第1期|p.29-36|共8页
  • 作者单位

    UMT08.3 PHYSl'Opt, ZA. de Creac'h Gwen, F-29196 Quimper cedex, France ,Universite Europeenne de Bretagne. France, Universite de Brest, EA3882, Laboratoire Universitaire de Biodiversite et Ecologie Microbienne, 1FR148 SclnBioS,6 rue de I'Universite, F-29334 Quimper, France,ADR1A Developpement, ZA. de Creac'h Gwen, F-29196 Quimper Cedex, France;

    UMT08.3 PHYSl'Opt, ZA. de Creac'h Gwen, F-29196 Quimper cedex, France ,Universite Europeenne de Bretagne. France, Universite de Brest, EA3882, Laboratoire Universitaire de Biodiversite et Ecologie Microbienne, 1FR148 SclnBioS,6 rue de I'Universite, F-29334 Quimper, France;

    UMT08.3 PHYSl'Opt, ZA. de Creac'h Gwen, F-29196 Quimper cedex, France ,Universite Europeenne de Bretagne. France, Universite de Brest, EA3882, Laboratoire Universitaire de Biodiversite et Ecologie Microbienne, 1FR148 SclnBioS,6 rue de I'Universite, F-29334 Quimper, France;

    UMT08.3 PHYSl'Opt, ZA. de Creac'h Gwen, F-29196 Quimper cedex, France ,Universite Europeenne de Bretagne. France, Universite de Brest, EA3882, Laboratoire Universitaire de Biodiversite et Ecologie Microbienne, 1FR148 SclnBioS,6 rue de I'Universite, F-29334 Quimper, France;

    UMT08.3 PHYSl'Opt, ZA. de Creac'h Gwen, F-29196 Quimper cedex, France ,ADR1A Developpement, ZA. de Creac'h Gwen, F-29196 Quimper Cedex, France;

    Danone Research, Avenue de la Vauve, RD128, F-91767 Paiaiseau Cedex, France;

    lNRA UMR408, Securite et Qualite des Produits d'Origine Vegetate, F-84000 Avignon, France,Universite a"Avignon et des Pays de Vaucluse, UMR408, Security et Qualite des Produits d'Origine Vegetale, F-84000 Avignon, France;

    UMT08.3 PHYSl'Opt, ZA. de Creac'h Gwen, F-29196 Quimper cedex, France ,Universite Europeenne de Bretagne. France, Universite de Brest, EA3882, Laboratoire Universitaire de Biodiversite et Ecologie Microbienne, 1FR148 SclnBioS,6 rue de I'Universite, F-29334 Quimper, France;

  • 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

    predictive microbiology; model; heat resistance; sporulation environment; bacillus weihenstephanensis; bacillus licheniformis;

    机译:预测微生物学模型;耐热性;孢子形成环境;魏氏杆菌地衣芽孢杆菌;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号