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Uses of Staphylococcus aureus GeneChips in Genotyping and Genetic Composition Analysis

机译:金黄色葡萄球菌基因芯片在基因分型和遗传组成分析中的应用

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摘要

Understanding the relatedness of strains within a bacterial species is essential for monitoring reservoirs of antimicrobial resistance and for epidemiological studies. Pulsed-field gel electrophoresis (PFGE), ribotyping, and multilocus sequence typing are commonly used for this purpose. However, these techniques are either nonquantitative or provide only a limited estimation of strain relatedness. Moreover, they cannot extensively define the genes that constitute an organism. In the present study, 21 oxacillin-resistant Staphylococcus aureus (ORSA) isolates, representing eight major ORSA lineages, and each of the seven strains for which the complete genomic sequence is publicly available were genotyped using a novel GeneChip-based approach. Strains were also subjected to PFGE and ribotyping analysis. GeneChip results provided a higher level of discrimination among isolates than either ribotyping or PFGE, although strain clustering was similar among the three techniques. In addition, GeneChip signal intensity cutoff values were empirically determined to provide extensive data on the genetic composition of each isolate analyzed. Using this technology it was shown that strains could be examined for each element represented on the GeneChip, including virulence factors, antimicrobial resistance determinants, and agr type. These results were validated by PCR, growth on selective media, and detailed in silico analysis of each of the sequenced genomes. Collectively, this work demonstrates that GeneChips provide extensive genotyping information for S. aureus strains and may play a major role in epidemiological studies in the future where correlating genes with particular disease phenotypes is critical.
机译:了解细菌物种中菌株的相关性对于监测抗菌素耐药性库和进行流行病学研究至关重要。脉冲场凝胶电泳(PFGE),核糖分型和多位点序列分型通常用于此目的。但是,这些技术不是定量的,或者仅提供了应变相关性的有限估计。而且,它们不能广泛定义构成生物的基因。在本研究中,使用新颖的基于GeneChip的方法对21株对奥沙西林耐药的金黄色葡萄球菌(ORSA)菌株进行了分型,这些菌株代表了8种主要的ORSA谱系,可公开获得完整基因组序列的7种菌株中的每一种都进行了基因分型。还对菌株进行了PFGE和核糖分型分析。尽管三种技术之间的菌株聚类相似,但GeneChip的结果提供了比核糖分型或PFGE更高的分离株判别水平。此外,根据经验确定GeneChip信号强度的临界值,以提供有关所分析的每个分离株的遗传组成的大量数据。使用这项技术表明,可以检查GeneChip上代表的每个元素的菌株,包括毒力因子,抗微生物耐药性决定因素和agr类型。这些结果通过PCR,在选择性培养基上的生长以及每个测序基因组的详细计算机分析进行了验证。总的来说,这项工作表明,GeneChips为金黄色葡萄球菌菌株提供了广泛的基因分型信息,并可能在未来的流行病学研究中发挥重要作用,在这些流行病学研究中,将基因与特定疾病表型相关起来至关重要。

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