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Application of genotypic and phenotypic analyses to commercial probiotic strain identity and relatedness

机译:基因型和表型分析在商业益生菌菌株同一性和相关性中的应用

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Aims: The objective of this study was to generate strain-specific genomic patterns of a bank of 67 commercial and reference probiotic strains, with a focus on probiotic lactobacilli.Methods and Results: Pulsed-field gel electrophoresis (PFGE) was used as the primary method for strain differentiation. This method was compared with carbohydrate fermentation analysis. To supplement visual comparison, PFGE patterns were analysed quantitatively by cluster analysis using unweighted pair group method with arithmetic averages. SmaI, NotI and XbaI were found to effectively generate clear and easy-to-interpret PFGE patterns of a range of probiotic strains. Some probiotic strains from different sources shared highly similar PFGE patterns.Conclusions: Results document the value of genotypic strain identification methods, combined with phenotypic methods, for determining probiotic strain identity and relatedness. No correlation was found between relatedness determined by carbohydrate fermentation profiles alone compared with PFGE analysis alone. Some commercial strains are probably derived from similar sources.Significance and Impact of the Study: This approach is valuable to the probiotic industry to develop commercial strain identification patterns, to provide quality control of strain manufacturing production runs, to track use of protected strains and to determine the relatedness among different research and commercial probiotic strains.
机译:目的:本研究的目的是生成67株商业和参考益生菌菌株的菌株特异性基因组模式,重点是益生菌乳酸菌。方法和结果:脉冲场凝胶电泳(PFGE)被用作主要菌株分化的方法。将该方法与碳水化合物发酵分析进行了比较。为了补充视觉比较,使用具有算术平均值的非加权对组方法通过聚类分析对PFGE模式进行了定量分析。发现SmaI,NotI和XbaI可有效生成一系列益生菌菌株的清晰且易于理解的PFGE模式。结论:结果证明了基因型菌株鉴定方法与表型方法相结合对确定益生菌菌株的身份和相关性的价值。与单独的PFGE分析相比,仅通过碳水化合物发酵曲线确定的相关性之间没有发现相关性。一些商业菌株可能来自相似的来源。研究的意义和影响:这种方法对于益生菌行业开发商业菌株鉴定模式,提供菌株生产生产运行的质量控制,跟踪受保护菌株的使用以及确定不同研究和商业益生菌菌株之间的相关性。

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