Myakishev M V, Khripin Y, Hu S, Hamer D H
Laboratory of Biochemistry, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
Genome Res. 2001 Jan;11(1):163-9. doi: 10.1101/gr.157901.
We have developed a new method for high-throughput genotyping of single nucleotide polymorphisms (SNPs). The technique involves PCR amplification of genomic DNA with two tailed allele-specific primers that introduce priming sites for universal energy-transfer-labeled primers. The output of red and green light is conveniently scored using a fluorescence plate reader. The new method, which was validated on nine model SNPs, is well suited for high-throughput, automated genotyping because it requires only one reaction per SNP, it is performed in a single tube with no post-PCR handling, the same energy-transfer-labeled primers are used for all analyses, and the instrumentation is inexpensive. Possible applications include multiple-candidate gene analysis, genomewide scans, and medical diagnostics.
我们开发了一种用于单核苷酸多态性(SNP)高通量基因分型的新方法。该技术涉及用两条带尾的等位基因特异性引物对基因组DNA进行PCR扩增,这两条引物会引入通用能量转移标记引物的引物位点。使用荧光酶标仪可以方便地对红色和绿色光的输出进行评分。这种新方法在9个模型SNP上得到了验证,非常适合高通量自动化基因分型,因为每个SNP只需要一个反应,在单个管中进行且无需PCR后处理,所有分析都使用相同的能量转移标记引物,并且仪器成本低廉。可能的应用包括多候选基因分析、全基因组扫描和医学诊断。