首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >High-resolution melting analysis of cDNA-derived PCR amplicons for rapid and cost-effective identification of novel alleles in barley
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High-resolution melting analysis of cDNA-derived PCR amplicons for rapid and cost-effective identification of novel alleles in barley

机译:cDNA衍生PCR扩增子的高分辨率解链分析,可快速,经济高效地鉴定大麦中的新等位基因

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摘要

An original method has been established for the identification of novel alleles of eukaryotic translation initiation factor 4E (eIF4E) gene, which is required for resistance to agronomically important bymoviruses, in barley germplasm. This method involves scanning for sequence variations in cDNA-derived PCR amplicons using High-resolution melting (HRM) followed by direct Sanger sequencing of only those amplicons which were predicted to carry nucleotide changes. HRM is a simple, cost-effective, rapid and high-throughput assay, which so far has only been widely used in clinical pathology for molecular diagnostic of diseases and patient genotyping. Application of HRM allowed significant reduction in the amount of expensive Sanger sequencing required for allele mining in plants. The method described here involved an investigation of total cDNA rather than genomic DNA, thus permitting the analyses of shorter (up to 300-bp) and fewer overlapping amplicons to cover the coding sequence. This strategy further reduced the allele mining costs. The sensitivity and accuracy of HRM for predicting genotypes carrying a wide range of nucleotide polymorphisms in eIF4E approached 100%. Results of the current study are promising and suggest that this method could also potentially be applied to the discovery of superior alleles controlling other important traits in barley as well in other model and crop plant species.
机译:已经建立了一种原始方法,用于鉴定大麦种质中对农学上重要的副病毒有抗性的真核翻译起始因子4E(eIF4E)基因的新等位基因。此方法涉及使用高分辨率熔解(HRM)扫描cDNA衍生的PCR扩增子中的序列变异,然后仅对预期携带核苷酸变化的那些扩增子进行直接Sanger测序。 HRM是一种简单,经济高效,快速且高通量的测定方法,迄今为止仅在临床病理学中广泛用于疾病的分子诊断和患者基因分型。应用HRM可以显着减少植物等位基因挖掘所需的昂贵的Sanger测序数量。这里描述的方法涉及对总cDNA而不是基因组DNA的研究,因此可以分析较短的片段(最高300 bp)和较少的重叠扩增子以覆盖编码序列。该策略进一步降低了等位基因挖掘成本。 HRM预测eIF4E中携带多种核苷酸多态性的基因型的敏感性和准确性接近100%。目前的研究结果是有希望的,并表明该方法也可能被应用于发现控制大麦以及其他模型和农作物物种的其他重要性状的优良等位基因。

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