Chiou Shu-Jiau, Yen Jui-Hung, Fang Cheng-Li, Chen Hui-Ling, Lin Tsai-Yun
Department of Life Science and Institute of Bioinformatics and Structural Biology, National Tsing Hua University, Hsinchu, Taiwan, ROC.
Planta Med. 2007 Oct;73(13):1421-6. doi: 10.1055/s-2007-990227. Epub 2007 Oct 1.
Different parts of medicinal herbs have long been used as traditional Chinese drugs for treating many diseases, whereas materials of similar morphology and chemical fingerprints are often misidentified. Analyses of sequence variations in the nuclear ribosomal DNA (rDNA) internal transcribed spacer (ITS) have become a valid method for authentication of medicinal herbs at the intergenic and interspecific levels. DNA extracted from processed materials is usually severely degraded or contaminated by microorganisms, thus generates no or unexpected PCR products. The goal of this study is to apply the ITS fragments selectively amplified with two designed primer sets for efficient and precise authentication of medicinal herbs. The designed primers led to an accurate PCR product of the specific region in ITS2, which was confirmed with DNA extracted from 55 processed medicinal herbs belonging to 48 families. Moreover, the selectively amplified ITS2 authenticated five sets of easily confusable Chinese herbal materials. The designed primers were proven to be suitable for a broad application in the authentication of herbal materials.
草药的不同部位长期以来一直被用作治疗多种疾病的传统中药,而形态和化学指纹相似的材料常常被误认。核糖体DNA(rDNA)内转录间隔区(ITS)序列变异分析已成为在基因间和种间水平上鉴定草药的有效方法。从加工材料中提取的DNA通常会严重降解或被微生物污染,因此无法产生或产生意外的PCR产物。本研究的目的是应用用两套设计引物选择性扩增的ITS片段,对草药进行高效、精确的鉴定。设计的引物导致ITS2中特定区域的准确PCR产物,这已通过从48个科的55种加工草药中提取的DNA得到证实。此外,选择性扩增的ITS2鉴定了五组容易混淆的中药材。结果证明,所设计的引物适用于广泛的草药鉴定应用。