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Genome complexity reduction for SNP genotyping analysis

机译:降低基因组复杂度以进行SNP基因分型分析

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摘要

Efficient single nucleotide polymorphism (SNP) genotyping methods are necessary to accomplish many current gene discovery goals. A crucial element in large-scale SNP genotyping is the number of individual biochemical reactions that must be performed. An efficient method that can be used to simultaneously amplify a set of genetic loci across a genome with high reliability can provide a valuable tool for large-scale SNP genotyping studies. In this paper we describe and characterize a method that addresses this goal. We have developed a strategy for reducing genome complexity by using degenerate oligonucleotide primer (DOP)-PCR and applied this strategy to SNP genotyping in three complex eukaryotic genomes; human, mouse, and Arabidopsis thaliana. Using a single DOP-PCR primer, SNP loci spread throughout a genome can be amplified and accurately genotyped directly from a DOP-PCR product mixture. DOP-PCRs are extremely reproducible. The DOP-PCR method is transferable to many species of interest. Finally, we describe an in silico approach that can effectively predict the SNP loci amplified in a given DOP-PCR, permitting the design of an efficient set of reactions for large-scale, genome-wide SNP studies.
机译:有效的单核苷酸多态性(SNP)基因分型方法对于完成许多当前的基因发现目标是必需的。大规模SNP基因分型的关键因素是必须执行的各个生化反应的数量。可用于以高可靠性同时扩增整个基因组的一组基因座的有效方法,可为大规模SNP基因分型研究提供有价值的工具。在本文中,我们描述并描述了解决此目标的方法。我们已经开发了一种通过使用简并寡核苷酸引物(DOP)-PCR降低基因组复杂性的策略,并将该策略应用于三个复杂的真核基因组中的SNP基因分型。人类,小鼠和拟南芥。使用单个DOP-PCR引物,可以扩增DNP-PCR产物混合物中直接分布在整个基因组中的SNP位点并进行准确的基因分型。 DOP-PCR具有极高的可重复性。 DOP-PCR方法可转移到许多目标物种。最后,我们描述了一种计算机方法,可以有效预测给定DOP-PCR中扩增的SNP位点,从而为大规模,全基因组SNP研究设计一套有效的反应。

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