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DNA barcoding: a genomic-based tool for authentication of phytomedicinals and its products

机译:DNA条形码:基于基因组的植物药及其产品认证工具

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DNA barcoding helps to identify the plant materials based on short, standardized gene sequences in a rapid, accurate, and cost-effective manner. Recent reports reveal that DNA barcoding can be used for the assignment of unknown specimens to a taxonomic group, authentic identification of phytomedicinals, and in plant biodiversity conservation. Research indicates that there is no single universal barcode candidate for identification of all plant groups. Hence, comparative analysis of plant barcode loci is essential for choosing a best candidate for authenticating particular medicinal plant genus/families. Currently, both chloroplastuclear regions are used as universal barcodes for the authentication of phytomedicinals. A recent advance in genomics has further enhanced the progress in DNA barcoding of plants by the introduction of high-throughput techniques like next generation sequencing, which has paved the way for complete plastome sequencing that is now termed as super-barcodes. These approaches could improve the traditional ethno-botanical and scientific knowledge of phytomedicinals and their safe use. Hence, current focus is on the investigation of phytomedicinals and herbal product integrity and authenticity through DNA barcoding with the goal of protecting consumers from potential health risks associated with product substitution and contamination.
机译:DNA条形码有助于快速,准确且经济高效地根据短而标准化的基因序列鉴定植物材料。最近的报道表明,DNA条形码可用于将未知标本分配给分类学组,对植物药进行真实鉴定,以及用于植物生物多样性保护。研究表明,没有用于识别所有植物群的通用条形码候选物。因此,对植物条形码位点的比较分析对于选择鉴定特定药用植物属/科的最佳候选者至关重要。当前,两个叶绿体/核区都用作通用条形码,用于鉴定植物药。基因组学的最新进展通过引入诸如下一代测序之类的高通量技术进一步增强了植物DNA条形码的进展,这为完整的塑性组测序(现在称为超级条形码)铺平了道路。这些方法可以改善传统的植物药的民族植物学和科学知识及其安全使用。因此,当前的重点是通过DNA条形码研究植物药和草药产品的完整性和真实性,目的是保护消费者免受与产品替代和污染相关的潜在健康风险。

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