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Emerging mutant populations of Listeria monocytogenes EGD-e under selective pressure of Thymbra capitata essential oil question its use in food preservation

机译:新兴突变群体李斯特菌单核细胞增生Egd-e在百建国百建国精油的选择性压力下,其在食品保存中的用途

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摘要

Due to their excellent antimicrobial properties, essential oils (EO) have been proposed as potential preservatives for certain kinds of foods, such as dairy products. However, the occurrence of pathogenic populations that are resistant to EOs could pose a health risk. This report seeks to assess the emergence of resistant populations in Listeria monocytogenes EGD-e growth at 37 degrees C under selective pressure of Thymbra capitata EO (TCO), to characterise their resistance in laboratory media, and to identify their genotypic changes, as well as to evaluate the resistance in skimmed milk. TCO cyclic treatment allowed the isolation of two L. monocytogenes EGD-e resistant strains against the EO: LmSTCO by sublethal doses (75 mu L/L TCO) and LmLTCO by lethal doses (300 mu L/L TCO) after 20 and 30 cycles, respectively. Both strains displayed an increase of the minimum inhibitory and bactericidal concentration against TCO and a higher survival rate after lethal treatments than the wild-type strain (LmWT). Growth kinetics revealed a better adaptation of LmSTCO in presence of TCO, while LmLTCO grew more slowly compared to LmWT, even in the absence of the antimicrobial. Moreover, a slight increase in crossresistance to antibiotics was observed: LmSTCO to beta-lactams and LmLTCO to a series of broad-spectrum antibiotics. The genomic study revealed one sole nucleotide change in LmSTCO located in plsC gene codifying an enzyme involved in the production of phosphatidic acid, a precursor in cell membrane synthesis. Five genetic variations were found in LmLTCO: among them, the deletion of an ATP-synthesis system involved in slowing bacterial growth. Inhibition and inactivation assays in skimmed milk confirmed the increased resistance of both strains, thereby indicating a safety risk in case these strains emerge in the food chain. These results strongly suggest that the occurrence of such resistances should be taken into account in order to ensure the efficacy of natural antimicrobials in the design of food preservation strategies.
机译:由于它们出色的抗微生物性质,因此精油(EO)已被提出为某些食物的潜在防腐剂,例如乳制品。然而,抗eos耐药群的发生可能会产生健康风险。本报告旨在评估在谷氨植物eo(TCO)的选择性压力下,在37摄氏度下,在37摄氏度下,在37摄氏度下的抗性群体的出现在37℃下,在实验室培养基中表征它们的抵抗力,以及鉴定其基因型变化,以及鉴定它们的基因型变化,以及评估脱脂牛奶中的耐药性。 TCO循环处理允许通过致死剂量(75μl/ L TCO)通过致命剂量(75μl/ L TCO)将两种单核细胞增强的EOD-E耐药菌分离为EO:LMSTCO,通过致命剂量(300μL/ L TCO)在20和30次循环后, 分别。两种菌株在致死治疗后的降低TCO的最小抑制和杀菌浓度和比野生型菌株(LMWT)的存活率较高。成长动力学揭示了在TCO存在下更好地适应LMSTCO,而LMLTCO也与LMWT相比慢得多,即使在没有抗微生物的情况下也是如此。此外,观察到对抗生素的肾脏交叉感应略微增加:LMSTCO至β-内酰胺和LMLTCO为一系列广谱抗生素。基因组研究揭示了位于PLSC基因的LMSTCO中的一种唯一的核苷酸变化,其编纂磷酸三种酶的酶,细胞膜合成中的前体。在LMLTCO中发现了五种遗传变异:其中,缺失参与细菌生长的ATP合成系统。脱脂乳中的抑制和灭活测定证实了两种菌株的抗性增加,从而表明在食物链中出现的情况下表明安全风险。这些结果强烈表明,应考虑到这种抗性的发生,以确保天然抗菌剂在食品保存策略设计中的疗效。

著录项

  • 来源
    《Food research international》 |2021年第7期|110403.1-110403.9|共9页
  • 作者单位

    Univ Zaragoza CITA Fac Vet Dept Prod Anim & Ciencia Alimentos Inst Agroalimentario Aragon IA2 Zaragoza Spain;

    Univ Zaragoza CITA Fac Vet Dept Prod Anim & Ciencia Alimentos Inst Agroalimentario Aragon IA2 Zaragoza Spain;

    Univ Zaragoza CITA Fac Vet Dept Prod Anim & Ciencia Alimentos Inst Agroalimentario Aragon IA2 Zaragoza Spain;

    Univ Zaragoza CITA Fac Vet Dept Prod Anim & Ciencia Alimentos Inst Agroalimentario Aragon IA2 Zaragoza Spain;

    Univ Zaragoza CITA Fac Vet Dept Prod Anim & Ciencia Alimentos Inst Agroalimentario Aragon IA2 Zaragoza Spain;

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

    Listeria monocytogenes; Thymbra capitata essential oil; Evolution assays; Genotypic resistance and tolerance; Skimmed milk;

    机译:histeria单核细胞元;胸腺骨质天然植物精油;进化测定;基因型抵抗和耐受性;脱脂牛奶;
  • 入库时间 2022-08-19 02:32:17

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