标准参比物(SRM) DNA条形码文库法鉴定黄假蝇(Antidesma buunius)Spreng。(bignay)衍生的草药产品

N. K. G. Alfeche, S. D. A. Binag, M. P. Medecilo, G. D. Alejandro
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引用次数: 2

摘要

在菲律宾,草药产品(HMP)市场蓬勃发展,由于丰富的重要药理物种,和高水平的民族医学知识仍被广泛接受的公众。因此,来自Antidesma buunius (L.)的草药产品Spreng。在当地被称为bignay,是治疗各种循环系统和消化系统疾病的常用药物。虽然功效是有保证的,但市场上产品的真实性仍然存在问题,因为其他几种草药植物也可以提供上述好处。野生物种之间相似的形态也阻碍了物种识别,并造成混淆,特别是对普通消费者。销售的真实性hmp成立通过DNA条码技术提供快速、可靠的物种鉴定通过(1)基本局部比对搜索工具(BLASTn)和(2)建立第一个标准参考物质(SRM)草药条码库Antidesma spp。共有56个基因到达野生Antidesma matK-psbA-trnH-rbcL序列的9种虫害组成的SRM然后用来证实11个随机抽样的身份bignay-derived高分子聚合物。根据BLASTn和SRM(最大似然树重建)标准,受测序列显示,11个hmp中只有3个是真实的假芽孢杆菌衍生产品。其他8种hmp含有替代品,要么是填充物,要么是产品标签上未注明的不同草药植物。这些结果表明,应该利用分子数据支持的传统方法进行完整的HMP认证,以加强产品的安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Standard reference material (SRM) DNA barcode library approach for authenticating Antidesma bunius (L.) Spreng. (bignay) derived herbal medicinal products
ABSTRACT In the Philippines, the herbal medicinal product (HMP) market is flourishing due to the abundance of pharmacologically important species, and the high level of ethnomedicinal knowledge still widely accepted by the public. As such, herbal products from Antidesma bunius (L.) Spreng., locally known as bignay, are popular as medicine for various ailments of the circulatory and digestive systems. Though efficacy is guaranteed, the authenticity of the marketed products is still in question as several other herbal plants can provide the said benefits. Similar morphology between wild species also hinders species identification and contributes confusion especially to the general consumer. The authenticity of the marketed HMPs was established by means of DNA barcoding techniques which offers quick and reliable species identification by means of (1) the Basic Local Alignment Search Tool (BLASTn) and (2) the establishment of the first Standard Reference Material (SRM) Herbal barcode library for Antidesma spp. A total of 56 gene accessions from matK-psbA-trnH-rbcL sequences of 9 wild Antidesma spp. comprised the SRM which was then used to confirm the identity of 11 randomly sampled bignay-derived HMPs. Following the BLASTn and the SRM (maximum likelihood tree reconstruction) criterion, the subjected sequences revealed that only three of the 11 HMPs were authentic A. bunius-derived products. The other eight HMPs contained substitutes that were either fillers or different herbal medicinal plant not indicated in the product labels. These results indicate that product safety should be reinforced with complete HMP authentication using traditional methods supported by molecular data.
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