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Role of Intracellular Iron in Escherichia coli Inactivation by non-Thermal Processing.

机译:细胞内铁在通过非热加工灭活大肠杆菌中的作用。

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摘要

Non-thermal processing refers to emerging food preservation technologies with the application of mechanisms other than traditional heating to inactivate food-borne microorganisms. These include high pressure for Ultra-High Pressure (UHP) processing or electric pulses for Pulsed Electric Field (PEF) processing. Application of UHP or PEF processing is aiming to produce high quality and safe food without compromising its nutritional, functional and sensory attributes. Progress has been made in identifying the major targets in microbial cells treated with UHP or PEF. However, there are some challenges associated with the application of these techniques. Great variability among Escherichia coli strains in their resistance to UHP is yet to be understood. Presence of injured cells post UHP treatment may pose a hazard to food safety and quality.;The objectives of this study are (i) to investigate the relationship between intracellular free iron and UHP- or PEF-induced E. coli inactivation; (ii) to determine the transcriptional changes in E. coli O157:H7 subjected to sublethal UHP treatments and maintained under different oxygen availability conditions.;UHP treatments significantly increased the amounts of intracellular free iron in aerobically growing E. coli. Iron-overload conditions produced cell populations consistently more sensitive to the UHP treatment, regardless of the concentration of added iron. On the contrary, iron-deprivation significantly increased barotolerance of E. coli. It was proposed that high pressure-induced intracellular iron accumulation contributes to cell lethality by generating hydroxyl radicals through the Fenton reaction. The presence of oxygen might have acted as a hurdle enhancing the bactericidal effects via oxidatively leaching iron from iron-containing proteins. However, for E. coli grown anaerobically, free iron amounts were dramatically decreased after the application of UHP treatments. It was suggested that UHP-induced microbial inactivation was achieved through different mechanisms depending on the availability of oxygen.;Microarray analysis indicated that, in aerobically grown E. coli, genes related to stress response, cell membrane, ribosome units were significantly induced immediately after UHP treatments, however, carbohydrate metabolism related genes were significantly suppressed (p<0.01). Expression of these genes could be ascribed to UHP-induced damages on cellular membrane, proteins, ribosome units and DNAs, which had been demonstrated in previous study. For anaerobic growing E. coli, high pressure significantly up-regulated the expression of OxyR regulated genes and down-regulated Fnr regulated genes, and thus oxidative stress was proposed. Microarray analysis revealed a series of genes which are possibly regulated by UHP treatments. Reverse transcription real time PCR is recommended to confirm transcriptional changes and mutant analysis is suggested for mechanism clarification.
机译:非热处理是指新兴的食品保鲜技术,其应用了除传统加热以外的其他机制来灭活食源性微生物。这些包括用于超高压(UHP)处理的高压或用于脉冲电场(PEF)处理的电脉冲。 UHP或PEF加工的应用旨在生产高质量和安全的食品而不损害其营养,功能和感官特性。在鉴定用UHP或PEF处理的微生物细胞中的主要靶标方面已取得进展。但是,这些技术的应用存在一些挑战。大肠埃希菌菌株之间对UHP的抗药性差异很大,尚待了解。超高压处理后受损细胞的存在可能对食品安全和质量造成危害。这项研究的目的是(i)研究细胞内游离铁与超高压或PEF诱导的大肠杆菌灭活之间的关系; (ii)确定经受亚致死性UHP处理并维持在不同氧气利用率条件下的大肠杆菌O157:H7的转录变化。UHP处理显着增加了需氧生长的大肠杆菌中细胞内游离铁的量。铁超载条件使细胞群始终对UHP处理更加敏感,无论添加铁的浓度如何。相反,剥夺铁显着提高了大肠杆菌的耐压性。有人提出,高压诱导的细胞内铁蓄积通过芬顿反应产生羟基自由基,从而有助于细胞的致死性。氧的存在可能是通过从含铁蛋白质中氧化浸出铁而提高杀菌效果的障碍。但是,对于厌氧生长的大肠杆菌,在应用超高压处理后,游离铁的含量急剧下降。有人认为,UHP诱导的微生物失活是通过不同的机制来实现的,具体取决于氧气的可用性。;微阵列分析表明,在需氧生长的大肠杆菌中,与应激反应,细胞膜,核糖体单位有关的基因在诱导后立即被显着诱导UHP处理,但是,碳水化合物代谢相关基因被显着抑制(p <0.01)。这些基因的表达可归因于UHP诱导的细胞膜,蛋白质,核糖体单位和DNA的损伤,这在先前的研究中已得到证实。对于厌氧生长的大肠杆菌,高压显着上调了OxyR调控基因的表达,而下调了Fnr调控基因的表达,因此提出了氧化应激。微阵列分析揭示了可能受UHP处理调控的一系列基因。建议使用逆转录实时PCR来确认转录变化,并建议进行突变分析以阐明机理。

著录项

  • 作者

    Yan, Yuan.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Agriculture Food Science and Technology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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