Ma J, Wang P W, Yao D, Wang Y P, Yan W, Guan S C
Biotechnology Center of Jilin Agricultural University, Changchun, PR China.
Genet Mol Res. 2011 Feb 1;10(1):150-9. doi: 10.4238/vol10-1gmr988.
Polymerase chain reaction (PCR) technology plays an important role in molecular biology research, but false-positive and nonspecific PCR amplification have plagued many researchers. Currently, research on the optimization of the PCR system focuses on double-primer-based PCR products. This research has shown that PCR amplification based on single-primer binding to the DNA template is an important contributing factor to obtaining false-positive results, fragment impurity, and nonspecific fragment amplification, when the PCR conditions are highly restricted during PCR-based target gene cloning, detection of transgenic plants, simple-sequence repeat marker-assisted selection, and mRNA differential display. Here, we compared single- and double-primer amplification and proposed "single-primer PCR correction"; improvements in PCR that eliminate interference caused by single-primer-based nonspecific PCR amplification were demonstrated and the precision and success rates of experiments were increased. Although for some kinds of experiments, the improvement effect of single-primer PCR correction was variable, the precision and success rate could be elevated at 12-50% in our experiment by this way.
聚合酶链反应(PCR)技术在分子生物学研究中发挥着重要作用,但假阳性和非特异性PCR扩增一直困扰着许多研究人员。目前,PCR系统优化的研究主要集中在基于双引物的PCR产物上。本研究表明,在基于PCR的目标基因克隆、转基因植物检测、简单序列重复标记辅助选择和mRNA差异显示过程中,当PCR条件受到高度限制时,基于单引物与DNA模板结合的PCR扩增是导致获得假阳性结果、片段杂质和非特异性片段扩增的一个重要因素。在此,我们比较了单引物和双引物扩增,并提出了“单引物PCR校正”;证明了PCR的改进消除了基于单引物的非特异性PCR扩增引起的干扰,并提高了实验的精度和成功率。虽然对于某些类型的实验,单引物PCR校正的改进效果有所不同,但通过这种方法,在我们的实验中精度和成功率可提高12%-50%。