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    포트 충전용 상토의 물리.화학성이 플라스틱 백 재배를 통해 발생한 '매향' 딸기의 자묘 생육에 미치는 영향 = Influence of Physico.Chemical Properties of Root Substrates on the Growth of 'Maehyang' Strawberry Daughter Plants Produced by Bag Culture of Stock Plants

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    https://www.riss.kr/link?id=A105056023

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    This research was conducted to determine the influence of physiological and chemical properties of root substrates on the growth of the daughter plants of 'Maehyang' strawberry produced by bag culture. The daughter plants produced by stock plants during bag culture were individually separated and grown in 10-cm diameter plastic pots containing six different formulations of root substrates: a) 50% peatmoss plus 50% vermiculite (5:5 by volume, A), b) 70% peatmoss plus 30% perlite (7:3, B), c) 70% coir dust plus 30% perlite (7:3, C), d) mixture of 35% coir dust, 35% peatmoss, and 30% perlite (3.5:3.5:3.0, D), e) mixture of 20% rice hull, 70% coir dust, and 10% perlite (2:7:1, E), and f) 30% rice hull plus 70% coir dust (30:70, F). The container capacity and air filled porosity of the growing medium varied greatly among the six substrate formulations evaluated. The substrates E and F had less container capacity and higher air-holding spaces than the rest of the formulations. Therefore, these two formulations (E and F) may cause a problem in water management during the production of healthy daughter plants. The substrate formulations A, B, and D retained higher nitrogen (N) concentrations than other formulations containing coir dust or rice hull. The substrate formulations E and F which contained rice hull had lower N, phosphorus (P), and potassium(K) concentrations than other substrate formulations containing coir. The quality of the daughter plants grown in all six different substrate formulations was good with the crown diameters at around 10 mm. Fresh weights of the daughter plants grown in substrate formulations A, C, and D were higher than those obtained from B, E, and F. Dry weights of the daughter plants showed a similar trend. The daughter plants having high fresh and dry weights and increased crown diameter are in demand by the industry. For this reason, the substrate formulations A, C and D can readily be used as potting mixes during the production of 'Maehyang' strawberry transplants utilizing the bag culture system.
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    This research was conducted to determine the influence of physiological and chemical properties of root substrates on the growth of the daughter plants of 'Maehyang' strawberry produced by bag culture. The daughter plants produced by stock plants duri...

    This research was conducted to determine the influence of physiological and chemical properties of root substrates on the growth of the daughter plants of 'Maehyang' strawberry produced by bag culture. The daughter plants produced by stock plants during bag culture were individually separated and grown in 10-cm diameter plastic pots containing six different formulations of root substrates: a) 50% peatmoss plus 50% vermiculite (5:5 by volume, A), b) 70% peatmoss plus 30% perlite (7:3, B), c) 70% coir dust plus 30% perlite (7:3, C), d) mixture of 35% coir dust, 35% peatmoss, and 30% perlite (3.5:3.5:3.0, D), e) mixture of 20% rice hull, 70% coir dust, and 10% perlite (2:7:1, E), and f) 30% rice hull plus 70% coir dust (30:70, F). The container capacity and air filled porosity of the growing medium varied greatly among the six substrate formulations evaluated. The substrates E and F had less container capacity and higher air-holding spaces than the rest of the formulations. Therefore, these two formulations (E and F) may cause a problem in water management during the production of healthy daughter plants. The substrate formulations A, B, and D retained higher nitrogen (N) concentrations than other formulations containing coir dust or rice hull. The substrate formulations E and F which contained rice hull had lower N, phosphorus (P), and potassium(K) concentrations than other substrate formulations containing coir. The quality of the daughter plants grown in all six different substrate formulations was good with the crown diameters at around 10 mm. Fresh weights of the daughter plants grown in substrate formulations A, C, and D were higher than those obtained from B, E, and F. Dry weights of the daughter plants showed a similar trend. The daughter plants having high fresh and dry weights and increased crown diameter are in demand by the industry. For this reason, the substrate formulations A, C and D can readily be used as potting mixes during the production of 'Maehyang' strawberry transplants utilizing the bag culture system.

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    참고문헌 (Reference)

    1 최종명, "‘매향’ 딸기의 인산 영양진단을 위한 결핍증상 및 식물체 내 한계농도" 한국원예학회 27 (27): 55-61, 2009

    2 Kramer S., "The effects of the quality of young plants on strawberry yield" 32 : 115-117, 1985

    3 Choi, J.M., "Root Media" Hagyesa 2009

    4 Yun, H.K., "Reduction of the occurrence of anthracnose by underground drip irrigation for strawberry nursery field" 27 (27): 58-, 2009

    5 Kawasiro, H.T., "Practice of vegetable crop cultivation; Fruit vegetables II. 6th ed" Rural Culture Association (C) 2004

    6 Choi, J.M., "Physico ․ chemical properties of organic and inorganic materials used as container media" 18 : 529-535, 2000

    7 Fonteno, W.C., "Physical properties of three container media and their effect on poinsettia growth" 106 : 736-741, 1981

    8 Resh, H.M., "Hydroponic food production" Wood Bridge Press 123-132, 1995

    9 Milks, P.R., "Hydrology of horticultural substrate: III. Predicting air and water content of limited-volume plug cells" 114 : 57-61, 1989

    10 Nelson, P.V., "Greenhouse operation and management. 6th ed" Prentice Hall 2003

    1 최종명, "‘매향’ 딸기의 인산 영양진단을 위한 결핍증상 및 식물체 내 한계농도" 한국원예학회 27 (27): 55-61, 2009

    2 Kramer S., "The effects of the quality of young plants on strawberry yield" 32 : 115-117, 1985

    3 Choi, J.M., "Root Media" Hagyesa 2009

    4 Yun, H.K., "Reduction of the occurrence of anthracnose by underground drip irrigation for strawberry nursery field" 27 (27): 58-, 2009

    5 Kawasiro, H.T., "Practice of vegetable crop cultivation; Fruit vegetables II. 6th ed" Rural Culture Association (C) 2004

    6 Choi, J.M., "Physico ․ chemical properties of organic and inorganic materials used as container media" 18 : 529-535, 2000

    7 Fonteno, W.C., "Physical properties of three container media and their effect on poinsettia growth" 106 : 736-741, 1981

    8 Resh, H.M., "Hydroponic food production" Wood Bridge Press 123-132, 1995

    9 Milks, P.R., "Hydrology of horticultural substrate: III. Predicting air and water content of limited-volume plug cells" 114 : 57-61, 1989

    10 Nelson, P.V., "Greenhouse operation and management. 6th ed" Prentice Hall 2003

    11 Nam, M.H., "Effects of nitrogen, phosphorus, potassium and calcium nutrition on strawberry anthracnose" 55 : 246-249, 2006

    12 Park, K.W., "Effect of soil moisture content according to irrigation methods in culture on storability of cucumber fruits" 4 : 74-79, 1995

    13 Perez de Camacaro M.E., "Effect of plant density and initial crown size on growth, development and yield in strawberry cultivars Elsanta and Bolero" 79 : 739-746, 2004

    14 Rural Experiment Administration (RDA), "Cultivation manual of new cultivar ‘Seolhyang’ strawberry" 2008

    15 Shin, G.H., "Comparison of cultivation conditions and occurrence of disease of strawberry in controlled environmental system in the southern area of Korea" ISHS 2008

    16 Jang, W.S., "Comparison of cultivars on production of runner and daughter plant in strawberry" 27 (27): 25-, 2009

    17 Warncke, P.D., "Analysing greenhouse growth media by the saturation extraction method" 211 : 223-225, 1986

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