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产细菌素的LCW 44:一种来自生骆驼奶的高潜力益生菌候选菌株。

Bacteriocin-Producing LCW 44: A High Potential Probiotic Candidate from Raw Camel Milk.

作者信息

Vimont Allison, Fernandez Benoît, Hammami Riadh, Ababsa Ahlem, Daba Hocine, Fliss Ismaïl

机构信息

Department of Food Science, Faculty of Agriculture and Food Sciences, Institute of Nutrition and Functional Foods, Laval University, Quebec CityQC, Canada.

School of Nutrition Sciences, University of Ottawa, OttawaON, Canada.

出版信息

Front Microbiol. 2017 May 18;8:865. doi: 10.3389/fmicb.2017.00865. eCollection 2017.

Abstract

Bacterial isolates from raw camel milk were screened for antibacterial activity using the agar diffusion assay. Ten isolates selected for their inhibition of Gram-positive bacteria were identified by 16S sequencing as or . An isolate named LCW 44 exhibited the broadest antibacterial spectrum with an inhibitory activity against several Gram-positive strains belonging to the genera , , , and LCW 44 was shown to produce N-formylated enterocins L50A and L50B, as revealed by mass spectrometry and PCR analyses. This isolate did not harbor any of the virulence factors tested and was shown to be sensitive to all tested antibiotics. It showed high resistance to gastric and intestinal conditions (78 ± 4% survival). Its adhesion index was evaluated at 176 ± 86 and 24 ± 86 on Caco-2 cells and HT-29 cells, respectively, and it significantly reduced adhesion of by 65 and 49%, respectively. In Macfarlane broth (simulating the nutrient content of the colon), counts of were reduced by 2 log cycles after 24 h in co-culture with LCW 44, compared to the increase of 4 log cycles when cultured alone. Comparison with a bacteriocin-non-producing mutant of LCW 44 strongly suggests that inhibition of was due to bacteriocin production. Altogether, LCW 44 thus has potential for use as a probiotic for humans and veterinary medicine.

摘要

采用琼脂扩散法对生骆驼奶中的细菌分离株进行抗菌活性筛选。通过16S测序鉴定出10株对革兰氏阳性菌有抑制作用的分离株,分别为 或 。一株名为LCW 44的分离株表现出最广的抗菌谱,对属于 、 、 和 属的几种革兰氏阳性菌株具有抑制活性。质谱分析和PCR分析表明,LCW 44分离株可产生N-甲酰化肠菌素L50A和L50B。该分离株未携带所检测的任何毒力因子,且对所有检测的抗生素敏感。它对胃和肠道环境具有较高的耐受性(存活率为78±4%)。其在Caco-2细胞和HT-29细胞上的黏附指数分别为176±86和24±86,并且分别显著降低了 的黏附率65%和49%。在麦克法兰肉汤(模拟结肠的营养成分)中,与LCW 44共培养24小时后, 的数量减少了2个对数周期,而单独培养时增加了4个对数周期。与不产生细菌素的LCW 44突变体进行比较,强烈表明对 的抑制作用是由于细菌素的产生。总之,LCW 44因此具有作为人类和兽用益生菌的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8373/5436277/b643ce47a962/fmicb-08-00865-g001.jpg

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