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Application of a double-enrichment procedure for microsatellite isolation and the use of tailed primers for high throughput genotyping

机译:双重富集程序在微卫星分离中的应用以及尾引物在高通量基因分型中的应用

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The number of microsatellite loci and their allelic diversity contribute to increase accuracy and informativity of genetic estimates, however, the isolation of microsatellite loci is not only laborious but also quite expensive. We used (GATA)n and (GACA)n tetranucleotide probes and single- and double-enrichment hybridization to construct and screen a genomic library with an increased proportion of DNA fragments containing repeat motifs. Repeats were found using both types of hybridization but the double-enrichment procedure recovered sequences of which 100% contained (GATA)n and (GACA)n motifs. Microsatellite loci primers were then designed with an M13R-tail or CAG-tag to produce scorable PCR products with minimal stutter. The approach used in this study suggests that double-enrichment is a worthwhile strategy when isolating repeat motifs from eukaryotic genomes. Moreover, the use of tailed microsatellite primers provides increased resolution for compound microsatellite loci, with a significant decrease in costs.
机译:微卫星基因座的数量及其等位基因多样性有助于提高遗传估计的准确性和信息性,但是,微卫星基因座的分离不仅费力而且昂贵。我们使用(GATA)n和(GACA)n四核苷酸探针以及单富集和双富集杂交来构建和筛选基因组文库,其中包含重复基序的DNA片段比例增加。使用两种类型的杂交都发现重复,但是双富集程序回收了其中100%包含(GATA)n和(GACA)n模体的序列。然后设计带有M13R-tail或CAG标签的微卫星基因座引物,以产生具有最小卡顿性的可评分PCR产物。本研究中使用的方法表明,从真核生物基因组中分离重复基序时,双重富集是一种值得的策略。此外,使用带尾的微卫星引物可提高复合微卫星基因座的分辨率,并显着降低成本。

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