• 제목/요약/키워드: flowring

검색결과 3건 처리시간 0.016초

Pharbitis nil 개화 요도시 엽단백질 변화에 대한 면역학적 분석 (Immunological Analysis of Proteins in the Leaf of Pharbitis nil during Photoinduction of Flowring)

  • 맹주선
    • Journal of Plant Biology
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    • 제25권4호
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    • pp.169-174
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    • 1982
  • Using double immunodiffusion and immunoelectrophoretic techniques, attempts were made to detect any protein changes in leaf tissues of a short-day plant, Pharbitis nil Chois. variety Violet during floral induction under 8 hr light, 16 hr dark cycles. Immunoprecipitin systems shwoed at least four proteins newly appeared in the induced leaf tissues. Accumulation of the proteins were observed as the induction proceeded.

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황기의 개화습성과 수분양식 및 결실 특성 (Flowering Habit, Pollination Patterns and Seed Setting in Astragalus membranaceus Bunge)

  • 김영국;손석용;성낙술;이봉호
    • 한국작물학회지
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    • 제45권3호
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    • pp.171-175
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    • 2000
  • 황기의 개화, 결실 및 수분양식을 구명하여 품종육성의 기초자료를 얻고자 시기별 개화.결실 특성 및 수분방법별 결실율에 대한 시험을 수행하였던 바 다음과 같은 결과를 얻었다. 1. 황기의 개화는 원줄기의 20-22절위에서 첫 꽃이 피기 시작하여 분지 발생순으로 개화되며 7월 중.하순경에 개화하기 시작하적 10월 중.하순까지 계속 관화되는 무한화서이다. 2. 개화시기별로는 9월 상순에 개화한 화경수가 가장 많아 꼬투리 및 종실 수도 9월 상순에 개화한 화경에서 가장 많은 경향이었다. 3. 소화가 착생되는 부위의 길이는 6.6-7.3cm, 소화수는 화경당 13-17화, 착협률은 30-45%, 협당 종실수는 4.8-5.3위 정도였다. 4. 꼬투리는 수분 후 30일 경에 길이가 3.8cm로 최대에 달하며, 폭은 8mm정도이고 종실수는 7.3개정도 형성되었다. 5. 황기 꽃의 수분양식은 봉지 씌우기로 자가 수정시키는 경우 거의 결실되지 않았고, 인공수분에 의한 결실율은 7월 하순부터 8월 하순까지는 5%이하였으나 9월 상순 이후부터는 13%이상으로 높아지는 경향이며 타가수분을 하는 것으로 나타났다.

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저관리 도시농업을 위한 벽면녹화 부직포 처리가 식용꽃인 한련화(Tropaeolum majus L.)의 생육과 개화에 미치는 영향 (Effects of Layers of Non-woven Fabric on the Growth and Flowering of Edile Flower Tropaeolum majus L. in the Vertical Greening System for Lower Maintenance Urban Agriculture)

  • 박재현;윤용한;이재만;송희연;주진희
    • 한국환경과학회지
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    • 제28권6호
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    • pp.545-552
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    • 2019
  • Tropaeolum majus, with a high decorative and food demand for vertical greening systems, has been utilized to revitalize urban agriculture. The effects of number of non-woven fabrics in a non-water environment and the adaptability of T. majus to this system were investigated. Planting ground composition of the container-type wall vertical greening system was made using non-woven fabric in one, two, three, or four layers. The results showed that the soil water content remained the highest when the non-woven fabric comprised 4 sheets. The morphological properties showed more growth with the 4 sheets than with 1, 2, and 3 sheets. In terms of physiological characteristics, chlorophyll content was mostly high in the 4 sheets, while shoot fresh weight value was in the order of 3 > 4 > 2 > 1 sheet, and root fresh weight value was in the order of 4 > 2 > 1 > 3 sheets. The dry weight of the measured values in the shoot was in the order of 4 > 3 > 2 > 1 sheet while no clear difference was found in the root of each treatment. The difference in the flowring characteristics was not different, but in evaluating the characteristics as a whole, the growth in the three layers of non-waven fabric was the best. In addition, the soil moisture contents and the growth characteristics were statistically significant as a positive correlation between the groups. Thus, greater the non-woven fabric, the higher is the adaptability of T. majus to dry stress under soil water-free conditions by maintaining soil moisture content. This showed that it represented an effective alternative as a method of vertical greening system for lower maintenance urban agriculture.