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A simple method using PyrosequencingTM to identify de novo SNPs in pooled DNA samples

机译:一种使用PyrosequencingTM识别合并的DNA样品中从头SNP的简单方法

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A practical way to reduce the cost of surveying single-nucleotide polymorphism (SNP) in a large number of individuals is to measure the allele frequencies in pooled DNA samples. PyrosequencingTM has been frequently used for this application because signals generated by this approach are proportional to the amount of DNA templates. The PyrosequencingTM pyrogram is determined by the dispensing order of dNTPs, which is usually designed based on the known SNPs to avoid asynchronistic extensions of heterozygous sequences. Therefore, utilizing the pyrogram signals to identify de novo SNPs in DNA pools has never been undertook. Here, in this study we developed an algorithm to address this issue. With the sequence and pyrogram of the wild-type allele known in advance, we could use the pyrogram obtained from the pooled DNA sample to predict the sequence of the unknown mutant allele (de novo SNP) and estimate its allele frequency. Both computational simulation and experimental PyrosequencingTM test results suggested that our method performs well. The web interface of our method is available at http://life.nctu.edu.tw/~yslin/PSM/.
机译:一种减少在大量个体中调查单核苷酸多态性(SNP)的成本的实用方法是测量合并的DNA样本中的等位基因频率。焦磷酸测序 TM 经常用于此应用,因为这种方法产生的信号与DNA模板的数量成正比。焦磷酸测序 TM 高温热像图由dNTP的分配顺序决定,dNTP的分配顺序通常是基于已知的SNP设计的,以避免杂合序列的异步扩展。因此,从未进行过利用热解图谱信号识别DNA池中的从头SNP的研究。在这里,在这项研究中,我们开发了一种算法来解决这个问题。利用事先已知的野生型等位基因的序列和热解图,我们可以使用从合并的DNA样本中获得的热解图来预测未知突变体等位基因(从头SNP)的序列并估计其等位基因频率。计算仿真和实验焦磷酸测序 TM 测试结果均表明该方法性能良好。我们方法的Web界面可从http://life.nctu.edu.tw/~yslin/PSM/获得。

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