Jiang Chao, Huang Lu-Qi, Yuan Yuan, Chen Min, Hou Jing-Yi, Wu Zhi-Gang, Lin Shu-Fang
Yao Xue Xue Bao. 2014 Apr;49(4):558-65.
Single nucleotide polymorphisms (SNP) is an important molecular marker in traditional Chinese medicine research, and it is widely used in TCM authentication. The present study created a new genotyping method by combining restriction endonuclease digesting with melting curve analysis, which is a stable, rapid and easy doing SNP genotyping method. The new method analyzed SNP genotyping of two chloroplast SNP which was located in or out of the endonuclease recognition site, the results showed that when attaching a 14 bp GC-clamp (cggcgggagggcgg) to 5' end of the primer and selecting suited endonuclease to digest the amplification products, the melting curve of Lonicera japonica and Atractylodes macrocephala were all of double peaks and the adulterants Shan-yin-hua and A. lancea were of single peaks. The results indicated that the method had good stability and reproducibility for identifying authentic medicines from its adulterants. It is a potential SNP genotyping method and named restriction endonuclease digest - melting curve analysis.
单核苷酸多态性(SNP)是中医药研究中的一种重要分子标记,广泛应用于中药鉴定。本研究通过将限制性内切酶消化与熔解曲线分析相结合,创建了一种新的基因分型方法,这是一种稳定、快速且易于操作的SNP基因分型方法。该新方法分析了位于内切酶识别位点内或外的两个叶绿体SNP的基因分型,结果表明,当在引物5'端连接一个14 bp的GC夹(cggcgggagggcgg)并选择合适的内切酶消化扩增产物时,金银花和白术的熔解曲线均为双峰,而掺伪品山银花和茅苍术的熔解曲线为单峰。结果表明,该方法在鉴别正品药材与掺伪品方面具有良好的稳定性和重现性。它是一种有潜力的SNP基因分型方法,命名为限制性内切酶消化-熔解曲线分析。