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High resolution melting analysis of almond SNPs derived from ESTs

机译:衍生自EST的杏仁SNP的高分辨率熔解分析

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摘要

High resolution melting curve (HRM) is a recent advance for the detection of SNPs. The technique measures temperature induced strand separation of short PCR amplicons, and is able to detect variation as small as one base difference between samples. It has been applied to the analysis and scan of mutations in the genes causing human diseases. In plant species, the use of this approach is limited. We applied HRM analysis to almond SNP discovery and genotyping based on the predicted SNP information derived from the almond and peach EST database. Putative SNPs were screened from almond and peach EST contigs by HRM analysis against 25 almond cultivars. All 4 classes of SNPs, INDELs and microsatellites were discriminated, and the HRM profiles of 17 amplicons were established. The PCR amplicons containing single, double and multiple SNPs produced distinctive HRM profiles. Additionally, different genotypes of INDEL and microsatellite variations were also characterised by HRM analysis. By sequencing the PCR products, 100 SNPs were validated/revealed in the HRM amplicons and their flanking regions. The results showed that the average frequency of SNPs was 1:114 bp in the genic regions, and transition to transversion ratio was 1.16:1. Rare allele frequencies of the SNPs varied from 0.02 to 0.5, and the polymorphic information contents of the SNPs were from 0.04 to 0.53 at an average of 0.31. HRM has been demonstrated to be a fast, low cost, and efficient approach for SNP discovery and genotyping, in particular, for species without much genomic information such as almond.
机译:高分辨率熔解曲线(HRM)是检测SNP的最新进展。该技术可测量温度诱导的短PCR扩增子链分离,并能够检测到样品之间只有一个碱基差的变异。它已被用于分析和扫描引起人类疾病的基因突变。在植物物种中,这种方法的使用受到限制。我们基于从杏仁和桃子EST数据库获得的预测SNP信息,将HRM分析应用于杏仁SNP发现和基因分型。通过针对25个杏仁品种的HRM分析,从杏仁和桃EST重叠群中筛选出推定的SNP。区分所有4类SNP,INDEL和微卫星,并建立了17个扩增子的HRM图谱。包含单个,双重和多个SNP的PCR扩增子产生了独特的HRM图谱。另外,还通过HRM分析表征了INDEL的不同基因型和微卫星变异。通过对PCR产物进行测序,在HRM扩增子及其侧翼区域中验证/显示了100个SNP。结果表明,该基因区SNPs的平均频率为1:114 bp,转化率为1.16:1。 SNP的稀有等位基因频率在0.02至0.5之间变化,SNP的多态信息含量从0.04至0.53,平均为0.31。对于SNP发现和基因分型,HRM已被证明是一种快速,低成本,有效的方法,特别是对于没有太多基因组信息的物种(如杏仁)而言。

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