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首页> 外文期刊>Applied and Environmental Microbiology >Comparison of Statistical Methods for Identification ofStreptococcus thermophilus, Enterococcus faecalis, and Enterococcus faecium from Randomly Amplified Polymorphic DNA Patterns
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Comparison of Statistical Methods for Identification ofStreptococcus thermophilus, Enterococcus faecalis, and Enterococcus faecium from Randomly Amplified Polymorphic DNA Patterns

机译:从随机扩增的多态性DNA模式鉴定嗜热链球菌,粪肠球菌和粪肠球菌的统计方法的比较

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Thermophilic streptococci play an important role in the manufacture of many European cheeses, and a rapid and reliable method for their identification is needed. Randomly amplified polymorphic DNA (RAPD) PCR (RAPD-PCR) with two different primers coupled to hierarchical cluster analysis has proven to be a powerful tool for the classification and typing of Streptococcus thermophilus,Enterococcus faecium, and Enterococcus faecalis (G. Moschetti, G. Blaiotta, M. Aponte, P. Catzeddu, F. Villani, P. Deiana, and S. Coppola, J. Appl. Microbiol. 85:25–36, 1998). In order to develop a fast and inexpensive method for the identification of thermophilic streptococci, RAPD-PCR patterns were generated with a single primer (XD9), and the results were analyzed using artificial neural networks (Multilayer Perceptron, Radial Basis Function network, and Bayesian network) and multivariate statistical techniques (cluster analysis, linear discriminant analysis, and classification trees). Cluster analysis allowed the identification of S. thermophilus but not of enterococci. A Bayesian network proved to be more effective than a Multilayer Perceptron or a Radial Basis Function network for the identification of S. thermophilus, E. faecium, and E. faecalis using simplified RAPD-PCR patterns (obtained by summing the bands in selected areas of the patterns). The Bayesian network also significantly outperformed two multivariate statistical techniques (linear discriminant analysis and classification trees) and proved to be less sensitive to the size of the training set and more robust in the response to patterns belonging to unknown species.
机译:嗜热链球菌在许多欧洲奶酪的生产中起着重要作用,因此需要一种快速可靠的鉴定方法。事实证明,带有两种不同引物的随机扩增多态DNA(RAPD)PCR(RAPD-PCR)与分级聚类分析相结合,是嗜热链球菌,粪肠球菌和粪肠球菌分类和分型的强大工具(G. Moschetti,G Blaiotta,M。Aponte,P。Catzeddu,F。Villani,P。Deiana和S. Coppola,J。Appl。Microbiol。85:25–36,1998年)。为了开发一种快速,廉价的鉴定嗜热链球菌的方法,使用单引物(XD9)生成了RAPD-PCR模式,并使用人工神经网络(多层感知器,径向基函数网络和贝叶斯网络)对结果进行了分析。网络)和多元统计技术(聚类分析,线性判别分析和分类树)。聚类分析可以鉴定嗜热链球菌,但不能鉴定肠球菌。对于简化的RAPD-PCR模式(通过对选定区域的条带求和获得的结果),贝叶斯网络被证明比多层感知器或径向基函数网络更有效地识别嗜热链球菌,粪肠球菌和粪肠球菌。模式)。贝叶斯网络也明显优于两种多元统计技术(线性判别分析和分类树),并证明对训练集的大小较不敏感,并且对属于未知物种的模式的响应更强健。

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