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Multilocus Sequence Typing Is a Reliable Alternative Method to DNA Fingerprinting for Discriminating among Strains of Candida albicans

机译:多基因座序列分型是一种可靠的DNA指纹图谱鉴别白念珠菌菌株的替代方法。

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摘要

Multilocus sequence typing (MLST) has emerged as a powerful new DNA-typing tool for the evaluation of intraspecies genetic relatedness. This method relies on DNA sequence analysis of nucleotide polymorphisms in housekeeping genes and has shown a high degree of intraspecies discriminatory power for bacterial and fungal pathogens. However, the results of the MLST scheme for Candida albicans have heretofore never been formally compared to those of other established typing techniques. To assess the value of MLST relative to those of other DNA fingerprinting tools for discriminating among strains of C. albicans, we applied it to a previously well-characterized set of 29 C. albicans isolates evaluated by the random amplified polymorphic DNA (RAPD), multilocus enzyme electrophoresis (MLEE), and Ca3 Southern hybridization probe techniques. MLST identified three clusters of genetically related isolates, with 82.3% direct concordance with MLEE, 82.7% with RAPD analysis, and 86.2% with the Ca3 Southern hybridization technique. When MLST was applied to a subset of 22 isolates of unrelated origins, it identified 21 independent diploid sequence types (DSTs), resulting in a discriminatory power of 99.6%. These DSTs were 96.9, 99.6, and 99.6% concordant with the genotypes identified by RAPD analysis, MLEE, and Ca3 Southern hybridization, respectively. These results demonstrate that MLST is a highly effective technique that performs at least comparably to other established DNA fingerprinting techniques.
机译:多基因座序列分型(MLST)已成为一种强大的新型DNA分型工具,可用于评估种内遗传相关性。该方法依赖于管家基因中核苷酸多态性的DNA序列分析,并显示出对细菌和真菌病原体的高度种内鉴别能力。但是,迄今尚未正式将白色念珠菌的MLST方案的结果与其他已建立的打字技术进行正式比较。为了评估MLST相对于其他DNA指纹识别工具的价值,以区分白色念珠菌菌株,我们将其应用于先前表征良好的29个白色念珠菌分离物集,并通过随机扩增多态性DNA(RAPD)进行了评估,多基因座酶电泳(MLEE)和Ca3 Southern杂交探针技术。 MLST鉴定了三类遗传相关的分离株,其中与MLEE直接符合性为82.3%,通过RAPD分析为82.7%,通过Ca3 Southern杂交技术为86.2%。当将MLST应用于不相关来源的22个分离株的子集时,它鉴定出21个独立的二倍体序列类型(DST),从而产生99.6%的鉴别力。这些DST分别为96.9、99.6和99.6%,分别与通过RAPD分析,MLEE和Ca3 Southern杂交确定的基因型一致。这些结果表明,MLST是一种高效技术,至少可以与其他已建立的DNA指纹技术相比。

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