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SNP genotyping with FRET probes. Optimizing the resolution of heterozygotes.

机译:用FRET探针进行SNP基因分型。优化杂合子的分辨率。

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摘要

Analysis of single nucleotide polymorphisms by PCR with fluorescence resonance energy transfer (FRET) probes often can produce a result where the melting peak corresponding to perfectly matched sequence (A allele) has a smaller area than the peak corresponding to the allele with a mismatch (B allele). This imbalance can make it difficult to distinguish heterozygous individuals from BB homozygotes. These results suggested that the higher strength in the binding of the perfect match probe to the A allele could cause the selective amplification of the B allele, possibly by interfering with the elongation of the PCR product. In order to optimize the detection of heterozygotes in allelic discrimination assays with FRET probes, we tested several modifications aimed at minimizing the apparent interference of the probes with the amplification process. We observed, in agreement with our hypothesis, that lowering the probe concentration or adding the probes after the amplification step more accurately resolved heterozygotes.
机译:使用荧光共振能量转移(FRET)探针通过PCR分析单核苷酸多态性通常可以产生以下结果:与完全匹配的序列(A等位基因)对应的熔解峰面积小于与具有错配的等位基因对应的峰(B等位基因)。这种不平衡使得很难将杂合子个体与BB纯合子区分开。这些结果表明,完全匹配探针与A等位基因结合的更高强度可能引起B等位基因的选择性扩增,这可能是通过干扰PCR产物的延伸来实现的。为了在用FRET探针进行等位基因鉴别分析中优化杂合子的检测,我们测试了几种旨在最大程度降低探针对扩增过程的明显干扰的修饰。我们观察到,与我们的假设一致,在扩增步骤后降低探针浓度或添加探针可以更准确地解析杂合子。

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