References
- Ahmed, A., N. Khalid, A. Ahmad, N.A. Abbasi, M.S.Z. Latif and M.A. Randhawa. 2013. Phytochemical and bio functional properties of buckwheat: A review. J. Agric. Sci. 152:349-369.
- Ahn, M.S., P.H. Park, Y.N. Kwon, M. Mekapogu, S.W. Kim, E.Y. Jie, J.A. Jeong, J.T. Park and O.K. Kwon. 2018. Discrimination of floral scents and metabolites in cut flowers of peony (Paeonia lactiflora Pall.) cultivars. Korean J. Plant Res. 31:641-651. https://doi.org/10.7732/kjpr.2018.31.6.641
- Baniya, B.K., D.M.S. Dongol and N.R. Dhungel. 1995. Further characterization and evaluation of Nepalese buckwheat (Fagopyrum spp.) landraces: In Matano, T. and A. Ujihara (eds.), Current Advances in Buckwheat Research, Proc. 6th Int. Symp. on Buckwheat in Shinshu, 24-29 August, 1995 Shinshu University Press, Japan. Vol. I-III. pp. 295-304.
- Bonafaccia, G., L. Gambelli, N. Fabjan and I. Kreft. 2003. Trace elements in flour and bran from common and tartary buckwheat. Food Chem. 83:1-5. https://doi.org/10.1016/S0308-8146(03)00228-0
- Campbell, C.G. 1997. Buckwheat Fagopyrum esculentum Moench. International Plant Genetic Resources Institute, CAB International. pp. 3-93.
- Chae, Y.A, J.S. Song and M.G. Cho. 2001. Identification of chemotypes in traditional aromatic pant resources Z. schinifolium Siebold et Zucc. and Z. piperitum DC. Korean J. Breed. Sci. 33:126-132.
- Chang, E.H., K.J. Sa, J.H. Kim and J.K. Lee. 2013. Analysis of morphological characteristics among popcorn inbred lines. Korean J. Crop Sci. 58:267-273. https://doi.org/10.7740/kjcs.2013.58.3.267
- Chao, P.L., S. Hsiu and Y. Hou. 2002. Flavonoids in herbs: Biological fates and potential interactions with xenobiotics. J. Food Drug Anal. 10:219-228.
- Chauhan, R.S., N. Gupta, S.K. Sharma, J.C. Rana, T.R. Sharma and S. Jana. 2010. Genetic and genome resources in buckwheat - present status and future perspectives. Eur. J. Plant Sci. Biotechnol. 4:33-44.
- Chen, Q.F., X.Y. Huang, H.Y. Li, L.J. Yang and Y.S. Cui. 2018. Recent progress in perennial buckwheat development. Sustainability 10:536. https://doi.org/10.3390/su10020536
- Dewanto, V, W. Xianzhong and R.H. Liu. 2002. Processed sweet corn has higher antioxidant activity. J. Agr. Food Chem. 50:4959-4964. https://doi.org/10.1021/jf0255937
- Fabjan, N., J. Rode, I.J. Kosir, Z. Zhang and I. Kreft. 2003. Tartary buckwheat (Fagopyrum tataricm Gaertn.) as a source of dietary rutin and quercitrin. J. Agric. Food Chem. 51: 6452-6455. https://doi.org/10.1021/jf034543e
- Ferguson, A.R. 2007. The need for characterization and evaluation of germplasm: Kiwifruit as and example. Euphytica 154: 371-382. https://doi.org/10.1007/s10681-006-9188-2
- Folin, O. and W. Denis. 1912. On phosphotungstic phosphomolybdic compounds as color reagents. J. Biol. Chem. 12: 239-249. https://doi.org/10.1016/S0021-9258(18)88697-5
- Hertog, M.G.L., D. Kromhout, C. Aravanis, H. Blackburn, R. Buzina, F. Fidanza, S. Giampaoli, A. Jansen, A. Menotti, S. Nedeljkovic, M. Pekkarinen, B.S. Simic, H. Toshima, E.J.M. Feskens, P.C.H. Hollman and M.B. Katan. 1995. Flavonoid intake and long-term risk of coronary heart disease and cancer in seven countries study. Arch. Intern. Med. 155:381-386. https://doi.org/10.1001/archinte.1995.00430040053006
- Holasova, M., V. Fiedlerova, H. Smrcinova, M. Orsak, J. Lachman and S. Vavreinova. 2002. Buckwheat - the source of antioxidant activity in functional foods. Food Res. International 35:207-211. https://doi.org/10.1016/S0963-9969(01)00185-5
- Huang, X.Y., F.J. Zeller, K.F. Hung, T.X. Shi and Q.F. Chen. 2014. Variation of major minerals and trace elements in seeds of tartary buckwheat (Fagopyrum tataricum Gaertn.). Genet. Res. Crop Evol. 61:567-577. https://doi.org/10.1007/s10722-013-0057-2
- Hyun, D.Y., M. Rauf, S.K. Lee, H.C. Ko, S.J. Oh, M.C. Lee and Y.M. Choi. 2018. Comparison of growth characteristics and flavonoids content by different cultivation seasons in buckwheat germplasm. Korean J. Plant Res. 31:489-497. https://doi.org/10.7732/KJPR.2018.31.5.489
- Jiang, P., F. Burczynski, C. Campbell, G. Pierce, J.A. Austria and C.J. Briggs. 2007. Rutin and flavonoid contents in three buckwheat species Fagopyrum esculentum, F. tataricum and F. homotropicum and their protective effects against lipid peroxidation. Food Res. Int. 40:356-364. https://doi.org/10.1016/j.foodres.2006.10.009
- Joshi, B.D. and R.S. Rana. 1995. Buckwheat (Fagopyrum esculentum). In Williams, J.T. (ed.), Cereals and Pseudo Cereals, Champman and Hall, New York, US, pp. 85-127.
- Keli, Y. 1992. Research on cultivated buckwheat germplasm resources in China. In Lin, R., M.D. Zhou, Y. Tao, J. Li and Z. Zhang (eds.), Proc. 5th Int. Symp. on Buckwheat, 20-26 August 1992, Taiyuan, China, Agricultural Publishing House. pp. 55-59.
- Khorasani, S.K., K. Mostafavi, E. Zandipour and A. Heidarian, 2011. Multivariate analysis of agronomic traits of new corn hybrids (Zea mays L.). International J. Agri. Sci. 1:314-322.
- Kim, D.Y., M.K. Yoon, T.I. Kim J.H. Kim and J.H. Kwack. 2009. Classification of strawberry germplasms based on horticultural traits and principal component analysis. Korean J. Hort. Sci. Tech. 27:636-643.
- Kim, M.S., H.J. Lee, D.A. Yu, J.Y. Song, M. Nino, F. Nogoy, J.K. Kim, Y.S. So and Y.G. Cho. 2016. Classification of Korean rice varieties based on agro-morphological traits. Korean J. Breed. Sci. 48: 254-270. https://doi.org/10.9787/KJBS.2016.48.3.254
- Kim, S.J., C.H. Lee, J. Kim and K.S. Kim. 2014. Phylogenetic analysis of Korean native Chrysanthemum species based on morphological characteristics. Sci. Horti. 175:278-289. https://doi.org/10.1016/j.scienta.2014.06.018
- Kim, S.J., H.B. Sohn, G.H. Kim, Y.Y. Lee, S.Y. Hong, K.D. Kim, J.H. Nam, D.C. Chang, J.T. Suh, B.J. Koo and Y.H. Kim. 2017. Comparison and validation of rutin and quercetin contents according to the extraction method of tartary buckwheat (Fagopyrum tataricum Gaertn.). Korean J. Food Sci. Technol. 49:258-264. https://doi.org/10.9721/KJFST.2017.49.3.258
- Kim, S.J. and Y.H. Kim. 2018. Agricultural guide of buckwheat. Rural Development Administration, Jeonju, Korea. pp. 7-90.
- Kitabayashi, H., A. Ujihara, T. Hirose and M. Minami. 1995. Varietal differences and heritability for rutin content in common buckwheat, Fagopyrum esculentum Moench. Japan J. Breed. 45:75-79. https://doi.org/10.1270/jsbbs1951.45.75
- Koyama, M., C. Nakamura and K. Nakamura. 2013. Changes in phenols contents from buckwheat sprouts during growth stage. J. Food Sci. Technol. 50:86-93. https://doi.org/10.1007/s13197-011-0316-1
- Kreft, I., G. Bonafacci and A. Zigo. 1994. Secondary metabolites of buckwheat and their importance in human nutrition. Food Technol. Biotech. 32:195-197.
- Lee, M.H., H.L. Kim, H.C. Rhee, Y.B. Kwack, H.M.P.C. Kumarihami and J.G. Kim. 2020. Evaluation of the genetic resources of kiwifruit with multivariate analysis. Horti. Sci. Tech. 38:569-581. https://doi.org/10.7235/HORT.20200053
- Lee, S.K., H.Y. Yoon, M.C. Lee, S.J. Oh, M. Rauf, O.S. Hur, N.Y. Ro, J.Y. Yi, D.Y. Hyun, G.T. Cho, H.C. Ko and Y.M. Choi. 2019. Comparison of the diversity of east Asian oat (Avena sativa L.) genetic resources by origins, considering major nutritional ingredients and agronomic traits. Korean J. Breed. Sci. 51:9-19. https://doi.org/10.9787/KJBS.2019.51.1.9
- Li, J., F. Gong and F. Li. 2016. Hypoglycemic and hypolipidemic effects of flavonoids from tartary buckwheat in type 2 diabetic rats. Biomed. Res. 27:132-137.
- Li, S.Q. and Q.H. Zhang. 2001. Advances in the development of functional foods from Buckwheat. Crit. Rev. Food Sci. Nutr. 41:451-464. https://doi.org/10.1080/20014091091887
- Liu, C.L., Y.S. Chen, J.H. Yang and B.H. Chiang. 2008. Antioxidant activity of tartary (Fagopyrum tataricum (L.) Gaertn.) and common (Fagopyrum esculentum Moench) buckwheat sprouts. J. Agric. Food Chem. 56:173-178. https://doi.org/10.1021/jf072347s
- Merendino, N., R. Molinari, L. Costantini, A. Mazzucato, A. Pucci and G. Bonafaccia. 2014. A new ‘functional’ pasta containing tartary buckwheat sprouts as an ingredient improves the oxidative status and normalizes some blood pressure parameters in spontaneously hypertensive rats. Food Function 5:1017-1026. https://doi.org/10.1039/C3FO60683J
- Nam, T.G., S.M. Lee, J.H. Park, D.O. Kim, N.I. Baek and S.H. Eom. 2015. Flavonoid analysis of buckwheat sprouts. Food Chem. 170:97-101. https://doi.org/10.1016/j.foodchem.2014.08.067
- Nielsen, J.P. and L. Munck. 2003. Evaluation of malting barley quality using exploratory data analysis. I. Extraction of information from micromalting data of spring and winter barley. J. Cereal Sci. 38:173-180. https://doi.org/10.1016/S0733-5210(03)00023-7
- Park, H.S., K.Y. Ha, K.Y. Kim, J.K. Nam, M.K. Baek, J.J. Kim, J.M. Jeong, Y.C. Cho. J.H. Lee, B.K. Kim and S.N. Ahn. 2015. Development of high-yielding rice lines and analysis of panicle and yield-related traits using doubled haploid lines derived from the cross between Deuraechan and Boramchan, high-yielding japonica rice cultivars in Korea. Korean J. Breed. Sci. 47:384-402. https://doi.org/10.9787/KJBS.2015.47.4.384
- Park, M.W., Y.S. Chung and S.H. Lee. 2016. Quality changes in tomato fruits caused by genotype and environment interaction. Horti. Sci. Technol. 35:361-372. https://doi.org/10.7235/HORT.20170038
- Rauf, M., H.Y. Yoon, S.K. Lee, D.Y. Hyun, M.C. Lee, S.J. Oh and Y.M. Choi. 2019. Evaluation of sprout growth traits and flavonoid content in common and tartary buckwheat germplasms. Plant Breed. Biotech. 7:375-385. https://doi.org/10.9787/PBB.2019.7.4.375
- Rice-Evans, C., N. J. Miller and G. Paganga. 1996. Structure antioxidant activity relationships of flavonoids and phenolic acids. Free Rad. Bio. Med. 20:933-956. https://doi.org/10.1016/0891-5849(95)02227-9
- R Studio Team. 2019. R Studio: Integrated development for R. R Studio, Inc., Boston, Massachusetts, U.S.A. URL http://www.rstudio.com.
- Sung, J.S., J.B. Kim, H.N. Yoon, J.W. Jeong, J.H. Park, H.J. Baek, J.H. Lee, C.G. Park, M.K. Huh and G.T. Cho. 2011. Comparison of plant morphological traits and fatty acids by GC-MS in collected genetic resources of Carthamus tinctorius L. Korean J. Intl. Agri. 23:306-314.
- SAS. 2019. SAS User's guide. Statistics, Version 9.4, SAS Institute Inc, Cary NC.
- Tsuji, K. and O. Ohnishi. 2001. Phylogenetic relationships among wild and cultivated tartary buckwheat (Fagopyrum tataricum Gaert.) populations revealed by AFLP analyses. Genes Genetic Systems 76:47-52. https://doi.org/10.1266/ggs.76.47
- Wang, L., X. Yang, P. Qin, F. Shan and G. Ren. 2013. Flavonoid composition, antibacterial and antioxidant properties of tartary buckwheat bran extract. Ind. Crop. Prod. 49:312-317. https://doi.org/10.1016/j.indcrop.2013.04.039