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    녹두 파종기에 따른 수량과 Flavonoid 함량 변화 = Effect of Seeding Times on Yield and Flavonoid Contents of Mungbean

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    https://www.riss.kr/link?id=A104997865

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    This study set out to investigate the changes to the growth, yield, and flavonoid contents of mungbean according to different seeding times from mid May to mid July in the southern region of Korea. Days to first flowering, days to first maturing, and cultivation period were shorter at later seeding time than earlier seeding time. But later the seeding time was, days from first maturing to first harvesting, days required between harvesting increased. Number of pods at first harvesting and yield of mungbean were highest when seeded at late June, showing increase in yield 14% more than at early June as standard seeding time. However number of seeds per pod and 1,000-seed weight at first harvesting were highest when seeded at mid July. The number of harvesting was smallest at two times when seeded at June or mid July. The contents of average vitexin and isovitexin in mungbean were highest in the order of mid July, late June, and mid May. In particular, their contents reached its highest point in the seeds of the second harvest. Considering the results of the cultivation period, yield, harvesting times, vitexin and isovitexin contents, the proper seeding time of mungbeans in the southern region of Korea will be from late June to mid July.
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    This study set out to investigate the changes to the growth, yield, and flavonoid contents of mungbean according to different seeding times from mid May to mid July in the southern region of Korea. Days to first flowering, days to first maturing, and ...

    This study set out to investigate the changes to the growth, yield, and flavonoid contents of mungbean according to different seeding times from mid May to mid July in the southern region of Korea. Days to first flowering, days to first maturing, and cultivation period were shorter at later seeding time than earlier seeding time. But later the seeding time was, days from first maturing to first harvesting, days required between harvesting increased. Number of pods at first harvesting and yield of mungbean were highest when seeded at late June, showing increase in yield 14% more than at early June as standard seeding time. However number of seeds per pod and 1,000-seed weight at first harvesting were highest when seeded at mid July. The number of harvesting was smallest at two times when seeded at June or mid July. The contents of average vitexin and isovitexin in mungbean were highest in the order of mid July, late June, and mid May. In particular, their contents reached its highest point in the seeds of the second harvest. Considering the results of the cultivation period, yield, harvesting times, vitexin and isovitexin contents, the proper seeding time of mungbeans in the southern region of Korea will be from late June to mid July.

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    참고문헌 (Reference)

    1 김영래, "파종기의 차이가 도입된 녹두품 종의 개화 및 수량에 미치는 영향" 4 : 51-60, 1977

    2 농촌진흥청, "농업과학기술 연구조사 분석기준"

    3 Lee, S. C., "Varietal differences of major chemical components and fatty acid composition in mungbean" 42 (42): 1-6, 1997

    4 Kim, Y. S., "Studies on the composition of Korean mungbean (Phaseolus aureus)" 13 (13): 146-152, 1981

    5 Kim, S. R, "Studies on soybean isoflavones" RDA 38 : 155-165, 1996

    6 Park, H. G, "Seasonal influence on yield, its components and maturity in mungbean (Vigna radiata)" 21 (21): 126-134, 1980

    7 Koh, K. J., "Physicochemical properties of aqueous extracts in small red bean, mungbean and black soybean" 29 (29): 854-859, 1997

    8 Kitamura, K., "Low isoflavone content in some early maturing cultivars, so called “summer-type soybeans”" 41 : 651-654, 1991

    9 Yun, H. T., "Isoflavone contents of soybean according to different planting dates" 51 (51): 174-178, 2006

    10 Hoeck, J. A, "Influence of genotype and environment on isoflavone contents of soybean" 40 : 48-51, 2000

    1 김영래, "파종기의 차이가 도입된 녹두품 종의 개화 및 수량에 미치는 영향" 4 : 51-60, 1977

    2 농촌진흥청, "농업과학기술 연구조사 분석기준"

    3 Lee, S. C., "Varietal differences of major chemical components and fatty acid composition in mungbean" 42 (42): 1-6, 1997

    4 Kim, Y. S., "Studies on the composition of Korean mungbean (Phaseolus aureus)" 13 (13): 146-152, 1981

    5 Kim, S. R, "Studies on soybean isoflavones" RDA 38 : 155-165, 1996

    6 Park, H. G, "Seasonal influence on yield, its components and maturity in mungbean (Vigna radiata)" 21 (21): 126-134, 1980

    7 Koh, K. J., "Physicochemical properties of aqueous extracts in small red bean, mungbean and black soybean" 29 (29): 854-859, 1997

    8 Kitamura, K., "Low isoflavone content in some early maturing cultivars, so called “summer-type soybeans”" 41 : 651-654, 1991

    9 Yun, H. T., "Isoflavone contents of soybean according to different planting dates" 51 (51): 174-178, 2006

    10 Hoeck, J. A, "Influence of genotype and environment on isoflavone contents of soybean" 40 : 48-51, 2000

    11 Jeong, S. J., "Flavonoids from the seeds of Phaseolus radiatus" 29 (29): 357-359, 1998

    12 Williams, C. A., "Flavonoid profiles in leaves, flowers and stems of fortynine members of the phaseolinae" 26 (26): 655-667, 1995

    13 Ko, M. S., "Effects of seeding dates on growth and yield in mungbean" 37 (37): 461-467, 1992

    14 Seneviratne, G. I.,, "Constitutive flavonoids and induced isoflavonoids as taxonomic markers in the genus Vigna" 20 (20): 459-467, 1992

    15 Um, S. H., "Compositions of lipid class and fatty acid in lipids extracted from mungbean starch" 19 (19): 87-93, 1990

    16 Kweon, M. R, "Comparison of physicochemical properties of legume starches" 25 (25): 334-339, 1993

    17 Jung, S. H., "Comparison of physicochemical properties of corn, sweet potato, potato, wheat and mungbean starches" 23 (23): 272-275, 1991

    18 Kim, K. J., "Comparative studies on growth patterns of pulse crops at different growing seasons. II. Variation in distribution of flowering dates and pod setting ratio of soybean, azuki-bean and mungbean" 26 (26): 243-250, 1981

    19 Yi, M. A., "Changes in isoflavone contents during maturation of soybean seed" 2 (2): 255-258, 1997

    20 Kim, D. K., "Antioxidant potentials and quantification of flavonoids in mungbean (Vigna radiata L.) seeds" 8 (8): 122-129, 2005

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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.46 0.46 0.42
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.49 0.49 0.91 0.08
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