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焦磷酸测序法进行单核苷酸多态性分析。

Single-nucleotide polymorphism analysis by pyrosequencing.

作者信息

Ahmadian A, Gharizadeh B, Gustafsson A C, Sterky F, Nyrén P, Uhlén M, Lundeberg J

机构信息

Department of Biotechnology, The Royal Institute of Technology (KTH), Stockholm, Sweden.

出版信息

Anal Biochem. 2000 Apr 10;280(1):103-10. doi: 10.1006/abio.2000.4493.

Abstract

There is a growing demand for high-throughput methods for analysis of single-nucleotide polymorphic (SNP) positions. Here, we have evaluated a novel sequencing approach, pyrosequencing, for such purposes. Pyrosequencing is a sequencing-by-synthesis method in which a cascade of enzymatic reactions yields detectable light, which is proportional to incorporated nucleotides. One feature of typing SNPs with pyrosequencing is that each allelic variant will give a unique sequence compared to the two other variants. These variants can easily be distinguished by a pattern recognition software. The software displays the allelic alternatives and allows for direct comparison with the pyrosequencing raw data. For optimal determination of SNPs, various protocols of nucleotide dispensing order were investigated. Here, we demonstrate that typing of SNPs can efficiently be performed by pyrosequencing using an automated system for parallel analysis of 96 samples in approximately 5 min, suitable for large-scale screening and typing of SNPs.

摘要

对用于分析单核苷酸多态性(SNP)位点的高通量方法的需求日益增长。在此,我们评估了一种用于此目的的新型测序方法——焦磷酸测序法。焦磷酸测序法是一种合成测序方法,其中一系列酶促反应产生可检测的光,该光与掺入的核苷酸成比例。用焦磷酸测序法对SNP进行分型的一个特点是,与其他两个变体相比,每个等位基因变体都会给出一个独特的序列。这些变体可以通过模式识别软件轻松区分。该软件显示等位基因变体,并允许与焦磷酸测序原始数据进行直接比较。为了实现SNP的最佳测定,研究了各种核苷酸分配顺序的方案。在此,我们证明使用自动系统在约5分钟内对96个样品进行平行分析,通过焦磷酸测序法可以高效地进行SNP分型,适用于SNP的大规模筛选和分型。

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