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Articles

DNA barcoding coupled with high resolution melting for rapid identification of Ardisia gigantifolia and its toxic adulterants

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Pages 641-649 | Received 21 Sep 2020, Accepted 01 Feb 2021, Published online: 18 May 2021

References

  • Feng JQ, Huang ZX, Mu LH, et al. Study on chemical constituents of rhizome of Ardisia gigantifolia. China Journal of Chinese Materia Medica. 2011;36(24):3463–3466.
  • Mu LH, Zhao HX, Gong QQ, et al. Triterpenoid saponins and the antitumor activity from the rhizome of Ardisia Gigantifolia Stapf. Pharmacological Journal of Chinese PLA. 2011;27:1–6. Chinese.
  • Mu LH, Wang LH, Wang YN, et al. Antiangiogenic effects of AG36, a triterpenoid saponin from Ardisia gigantifolia stapf. J Nat Med. 2020; 74(4):732–740.
  • Mao SZ, Tang WX, Luo WH, et al. Medicinal plant resources of Ardisia in Guangxi and sustainable utilization. Journal of Fujian Forest Science and Technology. Chinese. 2010;37(2):119–126.
  • Yu JC, Zhang LQ, Li Y, et al. Identification Ardisia gigantifolia and its adulterant Rhododendron molle. Strait Pharm J. 2011;23:49–50. Chinese.
  • Klocke JA, Hu MY, Chiu SF, et al. Grayanoid diterpene insect antifeedants and insecticides from Rhododendron molle. Phytochemistry. 1991;30(6):1797–1800.
  • Bernstein WB, Trotta RF, Rector JT, et al. Mechanisms for linezolid-induced anemia and thrombocytopenia. Ann Pharmacother. 2003;37(4):517–520.
  • Gao T, Yao H, Song J, et al. Evaluating the feasibility of using candidate DNA barcodes in discriminating species of the large Asteraceae family. BMC Evol Biol. 2010;10(1):324
  • Haye PA, Segovia NI, Vera R, et al. Authentication of commercialized crab-meat in Chile using DNA barcoding. Food Control. 2012;25(1):239–244.
  • Yan LJ, Liu J, Möller M, et al. DNA barcoding of Rhododendron (Ericaceae), the largest Chinese plant genus in biodiversity hotspots of the Himalaya–Hengduan Mountains. Mol Ecol Resour. 2015;15(4):932–944.
  • Chen SL, Yao H, Han JP, et al. Validation of the ITS2 region as a novel DNA barcode for identifying medicinal plant species. PLoS One. 2010;5(1):e8613
  • Pang X, Shi L, Song J, et al. Use of the potential DNA barcode ITS2 to identify herbal materials. J Nat Med. 2013;67(3):571–575.
  • Sun Z, Gao T, Yao H, et al. Identification of Lonicera japonica and its related species using the DNA barcoding method. Planta Med. 2011;77(3):301–306.
  • Zomuanpuii R, Ringngheti L, Brindha S, et al. ITS2 characterization and Anopheles species identification of the subgenus Cellia. Acta Trop. 2013;125(3):309–319.
  • Sharma S, Shrivastava N. Internal transcribed spacer guided multiplex PCR for species identification of Convolvulus prostratus and Evolvulus alsinoides. Acta Pharm Sin B. 2016;6(3):253–258.
  • Li M, Cao H, But PP, et al. Identification of herbal medicinal materials using DNA barcodes. J Sys Evol. 2011;49(3):271–283.
  • Cai S, Xu J, Shao Y, et al. Rapid identification of the Candida glabrata species complex by high-resolution melting curve analysis . J Clin Lab Anal. 2020; 34(6):e23226
  • Papaioannou C, Zeliou K, Trigas P, et al. High resolution melting (HRM) genotyping in the genus Origanum: molecular identification and discrimination for authentication purposes. Biochem Genet. 2020; 58(5):725–737.
  • Lagiotis G, Stavridou E, Bosmali I, et al. Detection and quantification of cashew in commercial tea products using High Resolution Melting (HRM) analysis. J Food Sci. 2020; 85(6):1629–1634.
  • Li J, Song M, Xiong C, et al. Application of barcode high-resolution melting for rapid authentication of the medicinal plant Psammosilene tunicoides. Biotechnol Biotec Eq. 2016;30(4):1–7.
  • Tamura K, Peterson D, Peterson N, et al. MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods. Mol Biol Evol. 2011;28(10):2731–2739.
  • Chen SL, Pang XH, Song JY, et al. A renaissance in herbal medicine identification: from morphology to DNA. Biotechnol Adv. 2014;32(7):1237–1244.
  • Ganopoulos I, Sakaridis I, Argiriou A, et al. A novel closed-tube method based on high resolution melting (HRM) analysis for authenticity testing and quantitative detection in Greek PDO Feta cheese. Food Chem. 2013;141(2):835–840.
  • Ganopoulos I, Bazakos C, Madesis P, et al. Barcode DNA high-resolution melting (Bar-HRM) analysis as a novel close-tubed and accurate tool for olive oil forensic use. J Sci Food Agric. 2013;93(9):2281–2286.
  • Ioannis G, Panagiotis M, Antonios Z, et al. High-resolution melting analysis allowed fast and accurate closed-tube genotyping of Fusarium oxysporum formae speciales complex. Fems Microbiol Lett. 2012;334(1):16–21.
  • Buddhachat K, Osathanunkul M, Madesis P, et al. Authenticity analyses of Phyllanthus amarus using barcoding coupled with HRM analysis to control its quality for medicinal plant product. Gene. 2015;573(1):84–90.
  • Kalivas A, Ganopoulos I, Xanthopoulou A, et al. DNA barcode ITS2 coupled with high resolution melting (HRM) analysis for taxonomic identification of Sideritis species growing in Greece. Mol Biol Rep. 2014;41(8):5147–5155.
  • Xanthopoulou A, Ganopoulos I, Kalivas A, et al. Multiplex HRM analysis as a tool for rapid molecular authentication of nine herbal teas. Food Control. 2016;60:113–116.
  • Duan BZ, Wang YP, Fang HL, et al. Authenticity analyses of Rhizoma Paridis using barcoding coupled with high resolution melting (Bar-HRM) analysis to control its quality for medicinal plant product. Chin Med. 2018;13(1):8
  • Osathanunkul M, Madesis P. Bar-HRM: a reliable and fast method for species identification of ginseng (Panax ginseng, Panax notoginseng, Talinum paniculatum and Phytolacca Americana). Peer J. 2019; 7(3):e7660
  • Chen YQ, Wang B, Wang P, et al. Rapid identification of common medicinal snakes and their adulterants using the Bar-HRM analysis method. Mitochondrial DNA A DNA Mapp Seq Anal. 2019; 30(2):367–374.
  • Liu YY, Fang HL, Li XW, et al. Identification of Gentiana rhodantha and its adulterants by DNA barcoding coupled with high resolution melting analysis. Chin Pharm J. 2019; 054(009):687–692. Chinese.
  • Xiong C, Hu Z, Tu Y, et al. ITS2 barcoding DNA region combined with high resolution melting (HRM) analysis of Hyoscyami Semen, the mature seed of Hyoscyamus niger. Chin J Nat Medicines. 2016;14(12):898–0903.
  • Song M, Li J, Xiong C, et al. Applying high-resolution melting (HRM) technology to identify five commonly used Artemisia species. Sci Rep. 2016;6:34133
  • Yue L, Li X, Yi Z, et al. DNA barcoding based identification of Hippophae species and authentication of commercial products by high resolution melting analysis. Food Chem. 2018;242:62–67.