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基于质体基因组开发特定微型条形码及其在利用DNA宏条形码技术对加工草药产品进行定性和定量鉴定中的应用:以……为例

Development of a Specific Mini-Barcode From Plastome and its Application for Qualitative and Quantitative Identification of Processed Herbal Products Using DNA Metabarcoding Technique: A Case Study on .

作者信息

Yu Xiaolei, Tan Wei, Gao Han, Miao Lin, Tian Xiaoxuan

机构信息

State Key Laboratory of Component-based Chinese Medicine, Tianjin University of Traditional Chinese Medicine, Tianjin, China.

出版信息

Front Pharmacol. 2020 Dec 17;11:585687. doi: 10.3389/fphar.2020.585687. eCollection 2020.

Abstract

Herbal products play an important role globally in the pharmaceutical and healthcare industries. However, some specific groups of herbal products are easily adulterated by confused materials on the market, which seriously reduces the products' quality. Universal conventional DNA barcodes would function poorly since the processed herbal products generally suffer from varying degrees of DNA degradation and DNA mixing during processing or manufacturing. For quality control purposes, an accurate and effective method should be provided for species identification of these herbal products. Here, we provided a strategy of developing the specific mini-barcode using as an example, and by coupling with the metabarcoding technique, it realized the qualitative and quantitative identification of processed herbal products. The plastomes of Senna obtusifolia (L.) H.S.Irwin & Barneby and Senna occidentalis (L.) Link were newly assembled, and the hypervariable coding-regions were identified by comparing their genomes. Then, the specific mini-barcodes were developed based on the identified hypervariable regions. Finally, we applied the DNA metabarcoding technique to the developed mini-barcodes. Results showed that the lengths of plastomes of and were 162,426 and 159,993 bp, respectively. Four hypervariable coding-regions , , , and were identified. Two specific mini-barcodes were successfully developed from , and the mini-barcode of primer 647F-847R was proved to be able to qualitatively and quantitatively identify these two processed seeds. Overall, our study established a valuable way to develop the specific mini-barcode, which may provide a new idea for the quality control of processed herbal products.

摘要

草药产品在全球制药和医疗保健行业中发挥着重要作用。然而,一些特定类别的草药产品很容易被市场上的混淆材料掺假,这严重降低了产品质量。通用的传统DNA条形码效果不佳,因为加工后的草药产品在加工或制造过程中通常会受到不同程度的DNA降解和DNA混合影响。为了进行质量控制,需要提供一种准确有效的方法来鉴定这些草药产品的物种。在此,我们以 为例提供了一种开发特定微型条形码的策略,并通过与宏条形码技术相结合,实现了对加工后草药产品的定性和定量鉴定。新组装了番泻叶和望江南的质体基因组,并通过比较它们的基因组鉴定出高变编码区。然后,基于鉴定出的高变区开发了特定的微型条形码。最后,我们将DNA宏条形码技术应用于开发的微型条形码。结果表明,番泻叶和望江南的质体基因组长度分别为162,426和159,993 bp。鉴定出四个高变编码区 、 、 和 。从 成功开发出两个特定的微型条形码,引物647F - 847R的微型条形码被证明能够定性和定量鉴定这两种加工后的 种子。总体而言,我们的研究建立了一种开发特定微型条形码的有价值方法,这可能为加工后草药产品的质量控制提供新思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d10b/7773718/3069855ea0af/fphar-11-585687-g001.jpg

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