胞外酵母肽因子及其对益生乳酸菌的应激保护作用

Mikrobiologiia Pub Date : 2016-07-01
L I Vorob'eva, E Yu Khodzhaev, E A Rogozhin, T A Cherdyntseva, A I Netrusov
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引用次数: 0

摘要

研究了不同分类群酵母(啤酒酵母菌、乳酸克卢维菌、实用念珠菌和利多耶氏耶氏菌)产生的胞外肽片段(再激活因子,RF)在胆汁盐(BS)诱导应激下对益生菌乳酸菌(LAB)、干酪乳杆菌、嗜酸乳杆菌和罗伊氏乳杆菌的保护作用。所有酵母的RF均显示为多肽性质;酿酒酵母的活性成分为低分子多肽,分子量为0.6 ~ 1.5 kDa。酵母因子的保护和再激活作用不具有种特异性,与黄球虫亚种相似。在经bs处理的实验菌细胞中,经酵母RE预孵育10 min后,观察到LAB细胞悬液的保护作用:存活细胞数(CFU)比对照高2 ~ 4.5倍。在应激处理后不迟于15 min将RF添加到LAB细胞悬液中观察到再激活作用。与保护器效应相比,CFU数为对照组的1 ~ 3倍。保护作用和再激活作用在葡萄球菌中最为显著,且依次递减:效用葡萄球菌>乳酸葡萄球菌>脂肪瘤葡萄球菌。发现酵母RF的保护作用效率取决于受体LAB细胞的特性,其中干酪乳杆菌菌株对BS处理最敏感。在两种变异中,RF对嗜酸乳杆菌的保护作用最高(CFU数量增加),而对干酪乳杆菌的保护作用最不明显。本文讨论了利用高抗逆性和对RF因子等应激保护代谢产物高响应的LAB菌株作为益生菌的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of Extracellular Yeast Peptide Factors and Their Stress-Protective Effect on Probiotic Lactic Acid Bacteria.

Protective effect of the extracellular peptide fraction (reactivating factors, RF) produced by yeasts of various taxonomic groups (Saccharomyces cerevisiae, Kluyveromyces lactis, Candida utilis, and Yarrowia li- polytica) on probiotic lactic acid bacteria (LAB) Lactobacillus casei, L. acidophilus,'and L. reuteri under bile salt (BS)-induced stress was shown. RF of all yeasts were shown to be of peptide nature; the active component of the S. cerevisiae RF was identified as a combination of low-molecular polypeptides with molecular masses of 0.6 to 1.5 kDa. The protective and reactivating effects of the yeast factors were not species-specific and were similar to those of the Luteococcusjaponicus subsp. casei R. In BS-treated cells of the tester bacteria, a pro- tective effect was observed after 10-min preincubation of the LAB cell suspension with yeast RE: the number of surviving cells (CFU) was 2 to 4.5 times higher than in the control. The reactivating effect was observed when RF was added to LAB cell suspensions not later than 15 min after stress treatment. It was less pro- nounced than the protector effect, with the CFU number I to 3 times that of the control. Both the protector and the reactivating effects were most pronounced in the S. cerevisiae and decreased in the row: C. utilis > K. lactis > Y lipolytica. The efficiency of protective action of yeast RF was found to depend on the properties of recepient LAB cells, with the L. casei strain being most sensitive to BS treatment. In both variants, the highest protective effect of RF (increase in the CFU number) was observed for L. acidophilus, while the least pronounced one, for L. casei. The reasons for application of the LAB strains combining high stress resistance and high response to stress-protecting metabolites, including RF factors, as probiotics, is discussed.

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