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Probiotic Potential and Safety Evaluation of Enterococcus faecalis OB14 and OB15 Isolated From Traditional Tunisian Testouri Cheese and Rigouta Using Physiological and Genomic Analysis

机译:粪肠球菌OB14和OB15的益生菌潜力和安全性评估从生理和基因组分析从传统的突尼斯德图里奶酪和Rigouta

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摘要

Lactic acid bacteria (LAB) strains OB14 and OB15 were isolated from traditional Tunisian fermented dairy products, Testouri cheese and Rigouta, respectively. They were identified as Enterococcus faecalis by the MALDI TOF-MS (matrix assisted laser desorption-ionization time of flight mass spectrometry) biotyper system and molecular assays (species-specific PCR). These new isolates were evaluated for probiotic properties, compared to E. faecalis Symbioflor 1 clone DSM 16431, as reference. The bacteria were found to be tolerant to the harsh conditions of the gastrointestinal tract (acidity and bile salt). They were low to moderate biofilm producers, can adhere to Caco-2/TC7 intestinal cells and strengthen the intestinal barrier through the increase of the transepithelial electrical resistance (TER). Susceptibility to ampicillin, vancomycin, gentamicin and erythromycin has been tested using the broth microdilutions method. The results demonstrated that E. faecalis OB14 and OB15 were sensitive to the clinically important ampicillin (MIC = 1 μg/mL) and vancomycin (MIC = 2 μg/mL) antibiotics. However, Whole Genome Sequencing (WGS) showed the presence of tetracycline resistance and cytolysin genes in E. faecalis OB14, and this led to high mortality of Galleria Mellonella larvae in the virulence test. Hierarchical cluster analysis by MALDI TOF-MS biotyper showed that E. faecalis OB15 was closely related to the E. faecalis Symbioflor 1 probiotic strain than to OB14, and this has been confirmed by WGS using the average nucleotide identity (ANI) and Genome-to-Genome Hybridization similarity methods. According to these results, E. faecalis OB15 seems to be reliable for future development as probiotic, in food or feed industry.
机译:乳酸菌(LAB)菌株OB14和OB15分别从传统的突尼斯发酵乳制品,Testouri奶酪和Rigouta中分离出来。通过MALDI TOF-MS(基质辅助激光解吸电离飞行时间质谱)生物分型系统和分子分析(物种特异性PCR)将它们鉴定为粪肠球菌。与粪肠球菌Symbioflor 1克隆DSM 16431相比,对这些新分离株的益生菌性质进行了评估,以作为参考。发现该细菌可耐受胃肠道的苛刻条件(酸度和胆汁盐)。他们是中低度的生物膜生产者,可以粘附于Caco-2 / TC7肠细胞并通过增加上皮电阻(TER)来增强肠屏障。已使用肉汤微量稀释法测试了对氨苄西林,万古霉素,庆大霉素和红霉素的敏感性。结果表明,粪肠球菌OB14和OB15对临床上重要的氨苄青霉素(MIC = 1μg/ mL)和万古霉素(MIC = 2μg/ mL)敏感。但是,全基因组测序(WGS)显示粪肠球菌OB14中存在四环素抗性和溶细胞素基因,这在毒性试验中导致梅勒菌幼虫的高死亡率。 MALDI TOF-MS生物分型仪进行的层次聚类分析表明,粪肠球菌OB15与粪肠球菌Symbioflor 1益生菌菌株比与OB14密切相关,WGS使用平均核苷酸同一性(ANI)和Genome-to证实了这一点。 -基因组杂交相似性方法。根据这些结果,粪肠球菌OB15似乎可以作为益生菌在食品或饲料工业中的未来开发使用。

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