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A novel method for SNP detection based on combinative analysis of primer extension and ligation

机译:一种基于底漆延伸和结扎组合分析的SNP检测的新方法

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We described a novel method that combined primer extension and ligation for simultaneously detecting a set of single nucleotide variations. To verify the feasibility of this method, seven synthetic templates containing seven KRAS mutation sites and one template without mutation were detected by four primer extension cycles and one ligation reaction in the present of labeled or unlabeled nucleotides. The primer extension cycles and ligation reaction would give three sets of fluorescent signals. By combining the three set of fluorescent signals, each mutations could be discriminated with great accuracy. The results demonstrated that all the mutation sites were discriminated with great accuracy. This method had the potential in simultaneous discriminating various SNPs in a microarray as long as a set of combinations of labeled/unlabeled nucleotides were designed appropriately. It will provide researcher with a high-throughput, time-saving, and labor-saving diagnosis tool.
机译:我们描述了一种组合引物延伸和连接的新方法,用于同时检测一组单核苷酸变化。为了验证该方法的可行性,在标记或未标记的核苷酸的存在下,通过四个引物延伸循环和一种连接反应来检测包含七种KRA突变位点的七个合成模板和一个没有突变的模板。引物延伸循环和连接反应将提供三组荧光信号。通过组合三组荧光信号,每个突变可以以极高的准确度辨别。结果表明,所有突变位点都以极高的准确性歧视。只要适当地设计标记/未标记的核苷酸的一组组合,该方法具有同时区分微阵列中的各种SNP的可能性。它将提供高吞吐量,节省时间和省力诊断工具的研究人员。

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