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Diversity analysis of beer spoiling gram-negative isolates using PCR fingerprinting and computer- assisted analysis

机译:使用PCR指纹纹理和计算机辅助分析啤酒破坏革兰阴性分离株的多样性分析

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Seventy-two Pectinatus strains, isolated from ten brewery environments throughout the world or sourced from culture collections, were analysed by three types of polymerase chain reaction (PCR) fingerprinting. This analysis was conducted in order to study diversity and relatedness within each genus and to compare sources within each brewery and between different breweries. All strains were subjected to repetitive-sequence-based (rep) PCR profiling using three primer sets: (GTG)_5 BOX and REP. Fingerprint profiles were obtained from field and reference strains of Pectinatus frisingensis, using all three primer sets. Pectinatus cerevisiiphilus isolates yielded (GTG)_5 - and BOX-PCR fingerprint profiles only. Cluster analysis of combined (GTG)_5, BOX and REP fingerprint profiles revealed several groups. A total of eleven genomic fingerprint types were generated within the collection of Pectinatus isolates, which included the reference strains and 61 field isolates. Rep-PCR genomic fingerprinting combines high resolution with high reproducibility and is rapid and inexpensive, compared to amplified fragment length polymorphism (AFLP) analysis and automated Ribotyping. Rep-PCR genomic fingerprinting allows for database mediated typing, identification and strain specific tracking. The results are valuable for tracking and tracing microorganisms in the case of spoilage and it can also be applied to profile other brewery related bacteria and yeast.
机译:通过三种聚合酶链反应(PCR)指纹识别分析了从世界整个世界或来自文化收集的十个啤酒厂环境中分离的七十二个果肉菌株。进行该分析,以研究每个属中的多样性和相关性,并在每个啤酒厂和不同的啤酒厂之间比较来源。使用三个引物套进行重复序列(REP)PCR分析的所有菌株:(GTG)_5盒和代表。使用所有三个引物套,从场和参考菌株获得指纹曲线,并使用所有三个引物套获得。 Pectinatus Cerevisiiphilus分离物仅产生(GTG)_5 - 以及Box-PCR指纹型材。组合(GTG)_5,Box和Rep指纹配置文件的集群分析显示了几组。在果树分离株的集合中产生了11种基因组指纹类型,其包括参考菌株和61个野外分离物。 REP-PCR的基因组指纹联合机以高再现性的高分辨率和快速,廉价,相比扩增片段长度多态性(AFLP)分析和自动核糖分型。 Rep-PCR基因组指纹识别允许数据库介导的输入,识别和应变特定跟踪。结果对于在腐败的情况下跟踪和跟踪微生物具有重要价值,也可以应用于以其他啤酒厂相关的细菌和酵母施用。

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