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DNA Barcodes for Discriminating the Medicinal Plant Scutellaria baicalensis (Lamiaceae) and Its Adulterants

机译:区分药用植物黄cut(唇形科)及其掺假者的DNA条形码

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摘要

Scutellaria baicalensis GEORGI (Lamiaceae) is the botanical origin of the well-known traditional Chinese medicine "Huang Qin" (Radix Scutellariae). Due to overexploitation that had induced a decline in natural sources, the dried roots of its congeners, S. amoena, S. rehderiana, and S. viscidula, have been used to adulterate it in recent years. This practice may cause a series of inconsistent therapeutic effects and quality control problems in the herbal medicine industry. Hence, we sequenced and analyzed three candidate DNA barcodes, the ribosomal RNA maturase gene (matK), the ribulose-1,4-bisphosphate carboxylase large subunit gene (rbcL), and the psbA-trnH intergenic spacer (psbA-trnH), to discriminate S. baicalensis and its adulterants. All candidate DNA barcodes had been successfully amplified from leaf samples. Comparatively, only psbA-trnH had been yielded from commercially prepared crude drug samples. Based on the sequence divergence, MA, can assign S. baicalensis and its adulterants into the correct family and genus, whereas, either matK or psbA-trnH can accurately discriminate S. baicalensis and its adulterants. We proposed the multilocus barcodes rbcL+psbA-trnH for the species identification of S. baicalensis and its adulterants, and the unique barcode psbA-trnH for the authentication of commercial Radix Scutellariae. The DNA barcoding technique could be applied to the quality control of "Huang Qin"-based medicinal preparations and to the management of medicinal herb trade in the markets.
机译:黄cut黄GEO(菊科)是著名的中药“黄uang”(黄S)的植物来源。由于过度开发导致自然资源的减少,近年来,其同类物的干根,如S. amoena,S。rehderiana和S. viscidula,已被掺假。这种做法可能会在草药行业引起一系列不一致的治疗效果和质量控制问题。因此,我们测序和分析了三个候选DNA条码,即核糖体RNA成熟酶基因(matK),核糖-1,4-双磷酸羧化酶大亚基基因(rbcL)和psbA-trnH基因间隔子(psbA-trnH)。区分黄ical及其掺杂物。从叶片样品中已成功扩增出所有候选DNA条形码。比较而言,仅从商业制备的粗制药物样品中获得了psbA-trnH。基于序列差异,MA可以将黄ba及其掺假物分配到正确的家族和属中,而matK或psbA-trnH可以准确区分黄ical及其掺假物。我们提出了多位点条形码rbcL + psbA-trnH用于黄ba及其掺假种的物种鉴定,以及独特的条形码psbA-trnH用于商业黄cut的鉴定。 DNA条形码技术可用于基于“黄秦”的药物制剂的质量控制以及市场上药材贸易的管理。

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