Kamel Katarzyna A, Kroc Magdalena, Święcicki Wojciech
Department of Genomics, Institute of Plant Genetics, Polish Academy of Sciences, Poznań, Poland.
Acta Biochim Pol. 2015;62(3):533-40. doi: 10.18388/abp.2015_977. Epub 2015 Aug 28.
Sequence tagged site (STS) markers are valuable tools for genetic and physical mapping that can be successfully used in comparative analyses among related species. Current challenges for molecular markers genotyping in plants include the lack of fast, sensitive and inexpensive methods suitable for sequence variant detection. In contrast, high resolution melting (HRM) is a simple and high-throughput assay, which has been widely applied in sequence polymorphism identification as well as in the studies of genetic variability and genotyping. The present study is the first attempt to use the HRM analysis to genotype STS markers in narrow-leafed lupin (Lupinus angustifolius L.). The sensitivity and utility of this method was confirmed by the sequence polymorphism detection based on melting curve profiles in the parental genotypes and progeny of the narrow-leafed lupin mapping population. Application of different approaches, including amplicon size and a simulated heterozygote analysis, has allowed for successful genetic mapping of 16 new STS markers in the narrow-leafed lupin genome.
序列标签位点(STS)标记是用于遗传图谱和物理图谱构建的重要工具,可成功应用于相关物种间的比较分析。目前植物分子标记基因分型面临的挑战包括缺乏适用于序列变异检测的快速、灵敏且廉价的方法。相比之下,高分辨率熔解曲线分析(HRM)是一种简单且高通量的检测方法,已广泛应用于序列多态性鉴定以及遗传变异性和基因分型研究。本研究首次尝试利用HRM分析对窄叶羽扇豆(Lupinus angustifolius L.)的STS标记进行基因分型。通过基于窄叶羽扇豆作图群体亲本基因型和子代熔解曲线图谱的序列多态性检测,证实了该方法的灵敏度和实用性。应用包括扩增子大小和模拟杂合子分析在内的不同方法,已成功地在窄叶羽扇豆基因组中对16个新的STS标记进行了遗传定位。