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Distinguishing Ophiopogon and Liriope tubers based on DNA sequences

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Abstract

Ophiopogon japonicus is a herbaceous perennial plant in Liliaceae, and its tubers are used in traditional Japanese medicine as Bakumondo (麦門冬), prescribed for treating cough, sputum, and thirst. Liriope is a genus of ornamental plants related to Ophiopogon, and its tubers are used in folk medicine as well. Although tubers from both genera are traded in Korean and Chinese markets, only O. japonicus is defined as the plant of origin for Bakumondo in the Japanese Pharmacopoeia [1], and Liriope tubers cannot legally be used as Bakumondo in Japan. Ophiopogon plants can be distinguished clearly from Liriope by their fruit color and by the morphological characteristics of their flowers. However, the tubers of both species are greatly similar, making it very difficult to differentiate the two genera by the appearance of their tubers. We, therefore, investigated the most appropriate DNA regions to use for practical and accurate identification of Ophiopogon and Liriope tubers. The sequence of the gene for the large subunit of ribulose-1,5-bisphosphate carboxylase/oxygenase (rbcL) was found to be suitable for discriminating Ophiopogon and Liriope tubers. The identification procedure was simplified using restriction enzyme digestion of the amplified rbcL fragment. The detection limit for Liriope contamination was estimated by performing the procedure using mixed samples of powdered Ophiopogon and Liriope tubers.

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References

  1. Ministerial Notification No. 65 (March 24, 2011). The Japanese Pharmacopoeia, 16th edition. Ophiopogon tuber. Ministry of Health, Labour and Welfare, Japan, p 1564

  2. Shiba M, Yamaji H, Kondo K, Ichiki H, Sakakibara I, Terabayashi S, Amagaya S, Aburada M, Miyamoto K (2004) Discrimination of Maidong (麦冬) derived from Ophiopogon and Liriope species by rbcL sequences, and their chemical components and tuber anatomy. Nat Med 58:15–21

    Google Scholar 

  3. Guo Y, Kondo K, Terabayashi S, Yamamoto Y, Shimada H, Fujita M, Kawasaki T, Maruyama T, Goda Y, Mizukami H (2006) DNA authentication of So-jutsu (Atractylodes lancea rhizome) and Byaku-jutsu (Atractylodes rhizome) obtained in the market based on the nucleotide sequence of the 18S–5.8S rDNA internal transcribed spacer region. J Nat Med 60:149–156

    Article  CAS  Google Scholar 

  4. Kondo K, Shiba M, Yamaji H, Morota T, Zhengmin C, Huixia P, Shoyama Y (2007) Species identification of licorice using nrDNA and cpDNA genetic markers. Biol Pharm Bull 30:1497–1502

    Article  CAS  PubMed  Google Scholar 

  5. Matsumura K, Sawada Y, Ito M (2013) Identification of origin plant species of cinnamon bark based on DNA sequences. Jpn J Food Chem 20:31–36

    CAS  Google Scholar 

  6. Ministerial Notification No. 65 (March 24, 2011). The Japanese Parmacopoeia, 16th edition. Purity tests on crude drugs using genetic information. The Ministry of Health, Labour and Welfare, Japan, pp 2049−2052

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Acknowledgments

We are very grateful to Shoyakuhinshitsushudankai and TSUMURA & CO. for providing tuber and plant samples of Ophiopogon and Liriope. We thank Ms. S. Oguri and Ms. S. Orimichi for their assistance with the DNA extraction from Ophiopogon and Liriope samples.

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Correspondence to Michiho Ito.

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Ito, M., Sato-Masumoto, N., Kobayashi, F. et al. Distinguishing Ophiopogon and Liriope tubers based on DNA sequences. J Nat Med 69, 555–564 (2015). https://doi.org/10.1007/s11418-015-0924-6

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  • DOI: https://doi.org/10.1007/s11418-015-0924-6

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