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Combining sequence-specific probes and DNA binding dyes in real-time PCR for specific nucleic acid quantification and melting curve analysis

机译:在实时PCR中结合序列特异性探针和DNA结合染料进行特异性核酸定量和解链曲线分析

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摘要

Currently, in real-time PCR, one often has to choose between using a sequence-specific probe and a nonspecific double-stranded DNA (dsDNA) binding dye for the detection of amplified DNA products. The sequence-specific probe has the advantage that it only detects the targeted product, while the nonspecific dye has the advantage that melting curve analysis can be performed after completed amplification, which reveals what kind of products have been formed. Here we present a new strategy based on combining a sequence-specific probe and a nonspecific dye, BOXTO, in the same reaction, to take the advantage of both chemistries. We show that BOXTO can be used together with both TaqMan probes and locked nucleic acid (LNA) probes without interfering with the PCR. The probe signal reflect formation of target product, while melting curve analysis of the BOXTO signal reveals primer-dimer formation and the presence of any other anomalous products.
机译:当前,在实时PCR中,通常必须在使用序列特异性探针和非特异性双链DNA(dsDNA)结合染料之间进行选择,以检测扩增的DNA产物。序列特异性探针具有仅检测目标产物的优点,而非特异性染料具有可以在完成扩增后进行熔解曲线分析的优点,这揭示了已经形成了哪种产物。在这里,我们提出了一种在相同反应中结合序列特异性探针和非特异性染料BOXTO的新策略,以利用两种化学的优势。我们显示BOXTO可以与TaqMan探针和锁核酸(LNA)探针一起使用,而不会干扰PCR。探针信号反映了目标产物的形成,而BOXTO信号的熔解曲线分析揭示了引物二聚体的形成以及任何其他异常产物的存在。

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