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Use of a Novel Panel of Nine Short Tandem Repeats for Exact and High-Resolution Fingerprinting of Aspergillus fumigatus Isolates

机译:九个短串联重复序列的新型面板用于烟曲霉菌株的精确和高分辨率指纹图谱的使用

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摘要

Here we describe a new panel of short tandem repeats (STRs) for a novel exact typing assay that can be used to discriminate between Aspergillus fumigatus isolates. A total of nine STR markers were selected from available genomic A. fumigatus sequences and were divided into three multicolor multiplex PCRs. Each multiplex reaction amplified three di-, tri-, or tetranucleotide repeats, respectively. All nine STR markers were used to analyze 100 presumably unrelated A. fumigatus isolates. For each marker, between 11 and 37 alleles were found in this population. One isolate proved to be a mixture of at least two different isolates. With the remaining 99 isolates, 96 different fingerprinting profiles were obtained. The Simpson's diversity index for the individual markers ranged from 0.77 to 0.97. The diversity index for the multiplex combination of di-, tri-, and tetranucleotide repeats ranged from 0.9784 to 0.9968. The combination of all nine markers yielded a Simpson's diversity index of 0.9994, indicative of the high discriminatory power of these new loci. In theory, this panel of markers is able to discriminate between no less than 27 × 109 different genotypes. The multicolor multiplex approach allows large numbers of markers to be tested in a short period of time. The exact nature of the assay combines high reproducibility with the easy exchange of results and makes it a very suitable tool for large-scale epidemiological studies.
机译:在这里,我们描述了一种新的短串联重复序列(STR),用于新颖的精确分型测定,可用于区分烟曲霉分离株。从可获得的基因组烟曲霉序列中总共选择了九种STR标记,并将其分为三个多色多重PCR。每个多重反应分别扩增了三个二,三或四核苷酸重复序列。所有九种STR标记均用于分析100种可能无关的烟曲霉分离株。对于每个标记,在该种群中发现了11至37个等位基因。一种分离物被证明是至少两种不同分离物的混合物。使用其余的99个分离株,获得了96种不同的指纹图谱。单个标记的辛普森多样性指数范围为0.77至0.97。二核苷酸,三核苷酸和四核苷酸重复序列的多重组合的多样性指数为0.9784至0.9968。所有这九种标记的组合产生的辛普森多样性指数为0.9994,表明这些新基因座具有很高的区分能力。从理论上讲,这组标记能够区分不少于27×10 9 个不同的基因型。多色多路复用方法允许在短时间内测试大量标记。该测定法的确切性质将高重复性与易于交换结果结合在一起,使其成为进行大规模流行病学研究的非常合适的工具。

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