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Validation of the ITS2 Region as a Novel DNA Barcode for Identifying Medicinal Plant Species
Authors:Shilin Chen  Hui Yao  Jianping Han  Chang Liu  Jingyuan Song  Linchun Shi  Yingjie Zhu  Xinye Ma  Ting Gao  Xiaohui Pang  Kun Luo  Ying Li  Xiwen Li  Xiaocheng Jia  Yulin Lin  Christine Leon
Institution:1. Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences, Peking Union Medical College, Beijing, People''s Republic of China.; 2. Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong, People''s Republic of China.; 3. Department of Pharmacy, Hubei University of Chinese Medicine, Wuhan, Hubei, People''s Republic of China.; 4. Royal Botanic Gardens, Kew, Richmond, United Kingdom.;Niels Bohr Institute and Biological Institutes, Denmark
Abstract:

Background

The plant working group of the Consortium for the Barcode of Life recommended the two-locus combination of rbcL + matK as the plant barcode, yet the combination was shown to successfully discriminate among 907 samples from 550 species at the species level with a probability of 72%. The group admits that the two-locus barcode is far from perfect due to the low identification rate, and the search is not over.

Methodology/Principal Findings

Here, we compared seven candidate DNA barcodes (psbA-trnH, matK, rbcL, rpoC1, ycf5, ITS2, and ITS) from medicinal plant species. Our ranking criteria included PCR amplification efficiency, differential intra- and inter-specific divergences, and the DNA barcoding gap. Our data suggest that the second internal transcribed spacer (ITS2) of nuclear ribosomal DNA represents the most suitable region for DNA barcoding applications. Furthermore, we tested the discrimination ability of ITS2 in more than 6600 plant samples belonging to 4800 species from 753 distinct genera and found that the rate of successful identification with the ITS2 was 92.7% at the species level.

Conclusions

The ITS2 region can be potentially used as a standard DNA barcode to identify medicinal plants and their closely related species. We also propose that ITS2 can serve as a novel universal barcode for the identification of a broader range of plant taxa.
Keywords:
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