CHARACTERISTICS OF THE MATK GENE REGION, AND GENETIC RELATIONSHIP OF Adinandra glischroloma COLLECTED IN LAO CAI PROVINCE, VIETNAM
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Received: 11/03/25                Revised: 08/05/25                Published: 08/05/25Abstract
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[1] T. L. Min and B. B. Bruce, “Theaceae,” in Flora of China, Z. Y. Wu, P. H. Raven and D. Y. Hong (eds.), Science Press, Beijing and Missouri Botanical Garden Press, St. Louis., vol. 12, 2007, pp. 435-443.
[2] H. H. Pham, An Illustrate Flora of Vietnam. Young Publishing, vol. 11, 2000.
[3] B. Liu, J. Yang, Y. Ma, E. Yuan, and C. Chen, “Antioxidant and angiotensin converting enzyme (ACE) inhibitory activities of ethanol extract and pure flavonoids from Adinandra nitida leaves,” Pharmaceutical biology, vol. 48, no. 12, pp. 1432-1438, 2010.
[4] H. Gao, B. Liu, F. Liu, and Y. Chen, “Anti-proliferative effect of camellianin A in Adinandra nitida leaves and its apoptotic induction in human Hep G2 and MCF-7 cells,” Molecules, vol. 15, no. 6, pp. 3878-3886, 2010.
[5] Y. Chen, G. Chen, X. Fu, and R. H. Liu, “Phytochemical Profiles and Antioxidant Activity of Different Varieties of Adinandra Tea (Adinandra Jack),” Journal of Agricultural and Food Chemistry, vol. 63, no. 1, pp. 169-176, 2015.
[6] H. Q. Nguyen, T. K. P. Than, and H. M. Chu, “Study on chemical composition and antibacteria activity of extracts total from leaves of Adiandra lienii species,” Proceedings National Biotechnology Conference 2019, 2019, pp. 178-182.
[7] T. N. L. Nguyen, H. Q. Nguyen, T. T. N. Nguyen, T. T. X. Vi, T. D. Sy, T. T. Nguyen, and H. M. Chu, “Antibacterial, Antioxidant and Anti - Cancerous Activities of Adiandra megaphylla Hu Leaf Extracts,” Biosciences, Biotechnology Research Communications, vol. 13, no. 3, pp. 1015-1020, 2020.
[8] T. N. L. Nguyen, and H. Q. Nguyen, “Chemical composition and biological activity of extracts total from stem of Adiandra megaphylla Hu collected in lao cai, Vietnam,” TNU Journal of Science and Technology, vol. 226, no. 10, pp. 55-61, 2021.
[9] T. S. Hoang and V. D. Luong, “Adinandra hongiaoensis (Theaceae) a New Species from Lam Dong, Vietnam,” Journal of Japanese Botany, vol. 89, no 5, pp. 331-334, 2014.
[10] T. K. O. Vu, H. G. Tran, T. H. Bui, T. L. P. Diep, T. V. A. Nguyen, and N. T. Le, “Chemical Constituents and Biological Activity of the Stems of Adinandra hainanensis Hayata,” ACG publication, Records of Natural products, vol. 16, no. 4, pp. 346-352, 2022, doi: 10.25135/rnp.282.2108.2158.
[11] T. K. O. Vu, T. T. H. Nguyen, V. D. Ho, N. T. Dinh, T. M. H. Nguyen, and N. T. Le, “New triterpene and nor-diterpene derivatives from the leaves of Adinandra poilanei,” Phytochemistry Letters, vol. 46, no. 1, pp. 101-105, 2021, doi: 10.1016/j.phytol.2021.10.003.
[12] H. Q. Nguyen and T. T. G. Kieu, “Use of matK DNA barcode to identify Adinandra samples collected at Lao Cai, Vietnam,” TNU Journal of Science and Technology, vol. 197, no. 4, pp. 205-210, 2015.
[13] H. Q. Nguyen, T. N. L. Nguyen, T. N. Doan, T. T. N. Nguyen, M. H. Pham, T. L. Le, T. D. Sy, H. H. Chu, and H. M. Chu, “Complete chloroplast geneome of novel Adrinandra megaphylla Hu species: molecular structure, comparative and phylogenetic analysis,” Scientific Reports, vol. 11, no. 11731, 2021, doi: 10.1038/s41598-021-91071-z.
[14] T. T. H. Pho, D. D. Tran, T. T. N. Nguyen, Q. T. Tu, H. Q. Nguyen, and H. M. Chu, “The chemical composition and biological activity of stem extracts of Adinandra glischroloma,” TNU Journal of Science and Technology, vol. 227, no. 05, pp. 186-194, 2022.
[15] N. T. T. Pham, D. P. Le, K. T. N. Pham, X. Thipphavong, and M. H. Chu, “DNA barcode of matK combined with ITS effectively distinguishes the medicinal plant Stephania brachyandra Diels collected in Laocai, Vietnam,” Journal of Applied Biology & Biotechnology, vol. 9, no. 6, pp. 63-70, 2021.
[16] M. A. Shaghai-Maroof, K. M. Soliman, R. A. Jorgenesen, and R. W. Allard, “Ribosomal DNAsepacer-length polymorphism in barley: mendelian inheritance, chromosomal location, and population dynamics,” Proceedings of the National Academy of Sciences of the United States of America, vol. 81, no. 24, pp. 8014-8019, 1984.
[17] J. W. Kress, K. J. Wurdack, E. A. Zimmer, L. A. Wei, and D. H. Janzen, “Use of DNA barcodes to identify flowering plants,” Proceedings of the National Academy of Sciences of the United States of America, vol. 102, no. 23, pp. 8369-8374, 2005.
[18] National Library of Medicine, “BLAST: Basic Local Alignment Search Tool,” 2023. [Online]. Available: https://blast.ncbi.nlm.nih.gov/Blast.cgi. [Accessed May 07, 2023].
[19] T. A. Hall, “BioEdit: a user-friendly biological sequence alignment editor and analysis program for windows 95/98/NT,” Nucleic Acids Symposium Series, vol. 41, pp. 95-98, 1999.
[20] S. Kumar, G. Stecher, M. Li, C. Knyaz, and K. Tamura, "MEGA X: Molecular Evolutionary Genetics Analysis across computing platforms," Molecular Biology and Evolution, vol. 35, no. 6, pp. 1547-1549, 2018.
DOI: https://doi.org/10.34238/tnu-jst.12056
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