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Quantification of allelic differential expression using a simple Fluorescence primer PCR-RFLP-based method

机译:使用简单的基于荧光引物PCR-RFLP的方法定量等位基因差异表达

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摘要

Allelic differential expression (ADE) is common in diploid organisms, and is often the key reason for specific phenotype variations. Thus, ADE detection is important for identification of major genes and causal mutations. To date, sensitive and simple methods to detect ADE are still lacking. In this study, we have developed an accurate, simple, and sensitive method, named fluorescence primer PCR-RFLP quantitative method (fPCR-RFLP), for ADE analysis. This method involves two rounds of PCR amplification using a pair of primers, one of which is double-labeled with an overhang 6-FAM. The two alleles are then separated by RFLP and quantified by fluorescence density. fPCR-RFLP could precisely distinguish ADE cross a range of 1- to 32-fold differences. Using this method, we verified PLAG1 and KIT, two candidate genes related to growth rate and immune response traits of pigs, to be ADE both at different developmental stages and in different tissues. Our data demonstrates that fPCR-RFLP is an accurate and sensitive method for detecting ADE on both DNA and RNA level. Therefore, this powerful tool provides a way to analyze mutations that cause ADE.
机译:等位基因差异表达(ADE)在二倍体生物中很常见,并且通常是特定表型变异的关键原因。因此,ADE检测对于鉴定主要基因和因果突变很重要。迄今为止,仍缺乏灵敏且简单的检测ADE的方法。在这项研究中,我们开发了一种准确,简单且灵敏的方法,称为荧光引物PCR-RFLP定量方法(fPCR-RFLP),用于ADE分析。该方法涉及使用一对引物进行两轮PCR扩增,其中一个引物用突出的6-FAM进行双标记。然后通过RFLP分离两个等位基因,并通过荧光密度定量。 fPCR-RFLP可以精确区分ADE跨1至32倍差异。使用这种方法,我们验证了PLAG1和KIT这两个与猪的生长速度和免疫反应性状有关的候选基因,它们在不同的发育阶段和不同的组织中都是ADE。我们的数据表明,fPCR-RFLP是在DNA和RNA水平上检测ADE的准确而灵敏的方法。因此,此功能强大的工具提供了一种分析导致ADE的突变的方法。

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