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A high-throughput SNP typing system for genome-wide association studies.

机译:基因组关联研究的高通量SNP键入系统。

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One of the most difficult issues to be solved in genome-wide association studies is to reduce the amount of genomic DNA required for genotyping. Currently available technologies require too large a quantity of genomic DNA to genotype with hundreds or thousands of single-nucleotide polymorphisms (SNPs). To overcome this problem, we combined the Invader assay with multiplex polymerase chain reaction (PCR), carried out in the presence of antibody to Taq polymerase, as well as using a novel 384-well card system that can reduce the required reaction volume. We amplified 100 genomic DNA fragments, each containing one SNP, in a single tube, and analyzed each SNP with the Invader assay. This procedure correctly genotyped 98 of the 100 SNP loci examined in PCR-amplified samples from ten individuals: the genotypes were confirmed by direct sequencing. The reproducibility and universality of the method were confirmed with two additional sets of 100 SNPs. Because we used 40 ng of genomic DNA as a template for multiplex PCR, the amount needed to assay one SNP was only 0.4 ng; therefore, theoretically, more than 200,000 SNPs could be genotyped at once when 100 microg of genomic DNA is available. Our results indicate the feasibility of undertaking genome-wide association studies using blood samples of only 5-10 ml.
机译:在基因组 - 宽协会研究中待解决的最困难的问题之一是减少基因分型所需的基因组DNA的量。目前可用的技术需要太大的基因组DNA,以与数百或数千种单核苷酸多态性(SNP)进行基因型。为了克服这个问题,我们将侵入者测定与多重聚合酶链反应(PCR)组合,在抗体聚合酶存在下进行,以及使用可以降低所需反应体积的新型384孔卡系统。我们扩增100种基因组DNA片段,每个基因组DNA片段含有一个SNP,在单个管中,并用入侵者测定分析每个SNP。该过程在来自十个个体的PCR扩增样品中检测到的100个SNP基因座中的该过程的正确基因分型98:通过直接测序确认基因型。该方法的再现性和普遍性地用两组100个SNP进行了确认。因为我们使用40 ng基因组DNA作为多重PCR的模板,所以测定一个SNP所需的量仅为0.4 ng;因此,在理论上,当100微米的基因组DNA可获得时,可以立即产生超过200,000个SNP。我们的结果表明使用仅5-10毫升的血液样品进行基因组 - 宽协会研究的可行性。

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