首页> 外文期刊>BMC Genomics >Whole-genome analysis of probiotic product isolates reveals the presence of genes related to antimicrobial resistance, virulence factors, and toxic metabolites, posing potential health risks
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Whole-genome analysis of probiotic product isolates reveals the presence of genes related to antimicrobial resistance, virulence factors, and toxic metabolites, posing potential health risks

机译:益生菌产物分离物的全基因组分析显示出与抗微生物抗性,毒力因子和有毒代谢物相关的基因存在,构成潜在的健康风险

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Safety issues of probiotic products have been reported frequently in recent years. Ten bacterial strains isolated from seven commercial probiotic products on market were evaluated for their safety, by whole-genome analysis. We found that the bacterial species of three probiotic products were incorrectly labeled. Furthermore, six probiotic product isolates (PPS) contained genes for the production of toxic metabolites, while another three strains contained virulence genes, which might pose a potential health risk. In addition, three of them have drug-resistance genes, among which two strains potentially displayed multidrug resistance. One isolate has in silico predicted transferable genes responsible for toxic metabolite production, and they could potentially transfer to human gut microflora or environmental bacteria. Isolates of Lactobacillus rhamnosus and Bifidobacterium animalis subsp. lactis are associated with low risk for human consumption. Based on a comparative genome analysis, we found that the isolated Enterococcus faecium TK-P5D clustered with a well-defined probiotic strain, while E. faecalis TK-P4B clustered with a pathogenic strain. Our work clearly illustrates that whole-genome analysis is a useful method to evaluate the quality and safety of probiotic products. Regulatory quality control and stringent regulations on probiotic products are needed to ensure safe consumption and protect human health.
机译:近年来经常报告益生菌产品的安全问题。通过全基因组分析评估了从七种商业益生菌产品中分离出7种商业益生菌产品的细菌菌株。我们发现三种益生菌产品的细菌种类不正确地标记。此外,六种益生菌产物分离株(PPS)含有毒性代谢物的基因,而另外三种菌株含有毒力基因,这可能会造成潜在的健康风险。另外,其中三种具有耐药基因,其中两个菌株可能显示多药耐药性。一种分离物在硅预测可转移基因,负责有毒代谢物生产,它们可能会转移到人体肠道微生物或环境细菌。分离乳杆菌和双歧杆菌胚子的分离物。乳酸与人类消费的低风险有关。基于比较基因组分析,我们发现分离的肠球菌粪便TK-P5D与明确均明确的益生菌菌株聚集,而E.粪群TK-P4b与致病菌株聚集。我们的工作清楚地说明了全基因组分析是评估益生菌产品的质量和安全性的有用方法。需要对益生菌产品的监管质量控制和严格规定,以确保安全消耗和保护人类健康。

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