• Title/Summary/Keyword: Fruit-bearing node

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Effects of feeding leaf positions on the growth and fruit quality in muskmelon plants showing leaf yellowing symptoms

  • Lee, Hee-Ju;Lee, Sang-Gyu;Park, Sung-Tae;Kim, Sung-Kyeom;Choi, Chang-Sun;Chun, Chang-Hoo
    • Korean Journal of Agricultural Science
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    • v.42 no.4
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    • pp.293-297
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    • 2015
  • This study was conducted to evaluate the influence of feeding leaf positions on the growth, net formation of fruits, and occurrence of leaf yellowing symptoms (LYS) in muskmelon plants. Plants having five or ten more leaves above the fruit-bearing node produced the greater biomass than those of plants having equal or five less leaves above the fruit-bearing node. The number of leaves above the fruit-bearing node also influenced on the occurrence of LYS. The number of plants with LYS decreased as the number of leaves borne on the nodes above the fruit-bearing node increased. The LYS infected ratio of BL-5 treatment were the greatest, while fruit weight of BL+5 treatment were the greatest among all the tested treatments. In addition, the net formation of BL-5 treatment showed the poorest. Results indicated that maintaining the higher number of leaves over the fruit-bearing node might be feasible the practical method for coping physiological damages from yellowing symptoms.

Favorable Irrigation Timing with Timer and Fruiting Position Focused on the Fruit Quality and Harvesting Time in Perlite Culture of Muskmelon (멜론의 펄라이트 재배시 타이머 제어에 의한 급액 시간과 착과절위가 과실의 품질과 수확시기에 미치는 영향)

  • Kim, H. J.;Kim, Y. S.
    • Journal of Bio-Environment Control
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    • v.11 no.4
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    • pp.157-162
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    • 2002
  • The efficient timer-controlled irrigation and the favorable fruiting position were investigated far highly quality melon fruits from Feb.18 to July Si 1999. The nutrient solution was supplied either at every hour from 6:00 to 18:00 (T-1) or at 6:00, 8:00, 10:00, 11:00, 12:00, 12:30, 13:00, 13:30, 14:00, 14:30, IS:00,16:00, and 17:00 (T-2). A fruit was set at the first node of the fruit bearing branch from the 10, 12, or 13th node of the main stem. Pot weight was maintained at almost n constant level, regardless of the daily integrated solar radiation in T-2. Soluble solids content (SSC) and fresh weight of fruit were not significantly different among the irrigation treatments at each harvesting time. At the first harvest, SSC and fresh weight of fruit were not significantly different between the fruiting positions within the irrigation treatment. At the second harvest, SSC was higher in T-2 than T-1. The SSC was low in the fruit of the loth node in T-1, while it was not significantly different between fruiting positions in T-2. Fruit fresh weight was the highest at the 12 and 13th nodes in T-1, and the 13th node in T-2. Fresh and dry weights of leaf except petiole, regardless of harvesting time, increased as the node position was higher, The higher the fruiting position was, the lower the leaf weight was. Therefore, it is recommended to irrigate more frequently during the mid-noon. Fruits can be harvested earlier at the lower nodes in the spring crop production.

Effects of Deep Tillage before Planting on Physicochemical Properties of Soil, Growth and Fruit Characteristics in Cultivation of Watermelon under Plastic Film House (수박 시설 재배에서 정식 전 심경로타리 처리가 토양 이화학성, 생육 및 과실 특성에 미쳐는 영향)

  • Eun, Jong-Seon;Han, Suk-Kyo;Kang, Nam-Hee;Kim, Ho-Cheol;Bae, Jong-Hyang
    • Journal of Bio-Environment Control
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    • v.19 no.3
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    • pp.130-134
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    • 2010
  • To investigate effects of deep tillage before planting on physicochemical properties of soil, growth and fruit characteristics in cultivation of watermelon (Citrullus vulgaris L. cv. 'Uriggul') under plastic film house, this study was conducted in cultivating field of Gochang Junbuk. pH in soil after harvest compared with soil before planting of watermelon had almost no change, but EC lowed greatly in the two treatments. Available phosphate concentration in the soil with the deep tillage treatment was lower, K concentration of exchangeable cation decreased greatly than these with conventional tillage treatment. In the growth at 27th day after planting plant, stem length to 10th node from the first node, leaf width with deep tillage treatment were longer, bearing node of the first and second flower and wilting degree were lower than these with conventional tillage treatment. In the growth of harvesting time, the stem length to 30th node from the first node with the deep tillage treatment were longer, leaf discoloration degree was lower than these with conventional tillage treatment. Also, the harvested fruits length, diameter, peel hardness, and weight were significantly better than these with conventional tillage treatment.

Effects of Selective Light Sources on Seedling Quality of Tomato and Cucumber in Closed Nursery System (폐쇄형 육묘시설 내에서 몇 가지 광원이 토마토와 오이의 묘소질에 미치는 영향)

  • Um, Yeong-Cheol;Jang, Yoon-Ah;Lee, Jun-Gu;Kim, Seung-Yu;Cheong, Seung-Ryong;Oh, Sang-Seok;Cha, Seon-Hwa;Hong, Seong-Chang
    • Journal of Bio-Environment Control
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    • v.18 no.4
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    • pp.370-376
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    • 2009
  • To produce uniform seedlings of tomato and cucumber with inexpensive way, their seedling quality by different light sources was investigated. The raising of seedling was performed by red LED (light emitting diodes), blue LED, red-blue mixed LED or fluorescent light with a fixed PPF(photosynthetic proton flux) level, about $40{\sim}60{\mu}mol{\cdot}m^{-2}{\cdot}sec^{-1}$. In the both tomato and cucumber, the rapid extension of hypocotyledonary axis was observed in Blue LED than fluorescent light, but opposite result was found in Red and mixed LED. During the nursery period of tomato and cucumber, the fresh weight was the highest in Red LED as 74% increasement in tomato and 74% in cucumber. In the case of seedling quality after the tomato nursery, there was no difference in the positions of 1st flower cluster and the number of bearing-flower per flower cluster by each light source. In case of cucumber, until 20th node, the setting ratio of female flower was higher in LED than fluorescent treatment, and also more healthy fruit setting was found in LED. Therefore, we assume that the Red or mixed (Red 2 + Blue 1) LED is more favorable to produce high quality tomato and cucumber seedlings in closed nursery facility.