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Application of high-resolution DNA melting for genotyping and variant scanning of diploid and autotetraploid potato

机译:高分辨率DNA融合技术在二倍体和同源四倍体马铃薯基因分型和变异扫描中的应用

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The ideal marker system for tetraploid potato would be dosage-sensitive and have the ability to distinguish heterozygous genotypes with multiple haplotypes within the genomic region targeted by the marker. The objective of this study was to evaluate the utility of high-resolution DNA melting (HRM) for genotyping and polymorphism detection in diploid and tetraploid potato. Amplicon scanning, unlabelled probe, and short amplicon assays were developed for four candidate genes affecting tuber skin and flesh colour, and starch, and a marker linked to nematode resistance. Genotyping a set of 95 potato clones revealed several examples of clones with three distinct haplotypes. Combined probe and amplicon analysis identified between 29 and 44 unique genotypes for the same assays. Assays developed for four of the five target genes are suitable for marker-assisted selection in potato breeding programs. This study illustrates the use of HRM in potato genetics. Further advances in the technology and associated data analysis should make HRM a useful tool for basic and applied studies of potato.
机译:四倍体马铃薯的理想标记系统应具有剂量敏感性,并能够区分标记所靶向的基因组区域内具有多个单倍型的杂合基因型。这项研究的目的是评估高分辨率DNA融合(HRM)在二倍体和四倍体马铃薯中进行基因分型和多态性检测的实用性。针对影响块茎皮肤和肤色,淀粉以及与线虫抗性相关的标志物的四个候选基因开发了扩增子扫描,未标记探针和短扩增子测定。对一组95个马铃薯克隆进行基因分型揭示了几个具有三个不同单倍型的克隆的例子。探针和扩增子的组合分析确定了29至44种独特的基因型,适用于相同的测定。为五个靶基因中的四个开发的分析方法适合在马铃薯育种程序中进行标记辅助选择。这项研究说明了HRM在马铃薯遗传学中的应用。技术和相关数据分析的进一步发展应使人力资源管理成为马铃薯基础和应用研究的有用工具。

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