• Title/Summary/Keyword: Dendranthema grandiflora

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Cryopreservation of chrysanthemum shoot tips using the droplet-vitrification technique (작은방울-유리화법에 의한 국화 신초의 초저온동결보존)

  • Lee, Yoon-Keol;Park, Sang-Un;Kim, Haeng-Hoon
    • Korean Journal of Agricultural Science
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    • v.38 no.2
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    • pp.227-233
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    • 2011
  • This study aimed at developing cryopreservation protocol for chrysanthemum (Dendranthema grandiflora Tzelevcv. peak) shoot apices based on droplet-vitrification procedure, which is a combination of droplet-freezing and solution based vitrification. Progressive preculture of shoot apices in liquid MS medium supplemented with 0.3 and 0.7 M sucrose for 31 and 17 hours, respectively, was found optimum among preculture treatments tested. The composition of both loading and vitrification solutions significantly affected recovery growth of shoot tips before and after cryopreservation. Balancing glycerol and sucrose concentrations in the solutions was beneficial for recovery growth. The highest recovery after cryopreservation was observed when apical shoot tips were extracted from 4-week-old in vitro plantlets, progressively precultured with 0.3-0.5-0.7 M sucrose for 32-16-6 hours, respectively, then treated with loading solution comprising of 1.9 M glycerol + 0.5 M sucrose (35% PVS3 solution). Apices were then dehydrated with the vitrification solution consisted of 50% glycerol + 50% sucrose for 90 minutes then directly immersed in liquid nitrogen.

Plant Regeneration from Leaf Segment Cultures of Chrysanthemum(Dendranthema grandiflora grandiflora Tzvelev) (국화의 엽절편 배양에 의한 식물체 재생)

  • 이윤경;권영주;이규민;형남인
    • Korean Journal of Plant Tissue Culture
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    • v.26 no.1
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    • pp.59-63
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    • 1999
  • Efficient plant regeneration via shoot organogenesis from in vitro cultured leaf segments of chrysanthemum (Dendranthema grandiflora Tzvelev cv. Namjeon) was achieved. Adventitious shoot formation from leaf explants was greatly influenced by plant growth regulator, leaf age, light condition, explant number per culture vessel, and explant orientation. Leaf segments, obtained from fully expanded young 1-2nd leaves and inoculated 8 explants per petri-dish with adaxial surface contact with MS medium supplemented with 0.5 mg/L BA and 2.0 mg/L NAA, produced 100% regeneration frequency and 13.7 shoots per explant. Regenerated adventitious shoots were successfully rooted in MS medium with 0.1 mg/L NAA. The plantlets were acclimatized in artificial soil mixtures (Vermiculite:Perlite=1:1), and transferred to greenhouse for flowering. The regenerated plants showed normal phenotypes.

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Introduction of LEAFY Gene to Chrysanthemum(Dendranthema x grandiflorum(Ramat.) Kitamura) ′Shuho-no-chikara′ Mediated by Agrobacterium LBA4404 (Agrobacterium LBA4404에 의한 국화 ′Shuho-no-chikara′에 LEAFY유전자의 도입)

  • Han, Bong-Hee;Yae, Byeoung-Woo;Yi, Sook-Yi;Lee, Soo-Young;Shin, Hack-Kee
    • Journal of Plant Biotechnology
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    • v.30 no.4
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    • pp.335-339
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    • 2003
  • Several experiments were carried out to transfer LEAFY gene to Dendranthema grandiflora 'Shuho-no-chikara' by Agrobacterium LBA4404 carrying pSK109 encoding LEAFY gene. Kanamycin 10mg/L was used in first selection medium, and 20mg/L in the second one. Co-culture for 3 days was more effective in increasing transformation efficiency than that for 7 days. The transformation efficiency by Agrobacterium LBA4404 carrying pSK109 encoding LEAFY gene was about 2.8% until the second selection, but only 0.13% of shoots (two plants) was confirmed as a transgenic plants in Southern analysis. The escape of putative transformants was occured seriously in the process of selections, PCR analysis for confirming of neomycin phosphotransferaseII (npt II), and Southern analysis for LEAFY gene. One transgenic plant appeared 7 days'early flowering in field.

Changes in SPAD Chlorophyll Value of Chrysanthemum (Dendranthema grandiflora Tzvelev) by Photoperiod and Light Intensity (광주기와 광도에 따른 국화 잎의 SPAD 엽록소 함량의 변화)

  • Lee, Byung-Joo;Won, Mi-Kyoung;Lee, Dong-Hee;Shin, Dong-Gi
    • Horticultural Science & Technology
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    • v.19 no.4
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    • pp.555-559
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    • 2001
  • This research was conducted to estimate the chlorophyll contents of chrysanthemum leaves using SPAD-502 chlorophyll meter under different photoperiod and light intensity. Measurements were done at every third leaf intervals starting from the top of the stem to the bottom at harvest time. SPAD value was highest at 10 hours of photoperiods, followed by 13 and 16 hours of photoperiods. In particular, under short day condition, SPAD value was highest in the young leaves below the flower bud and decreased down the leaf profile. Under long day condition, SPAD value reached maximum at leaves between $15-27^{th}$ from the top and decreased to the minimum immediately below the flower bud (youngest leaf). These results may indicate that the younger leaves become strong source of supporting flowers in reproductive stage, while the younger leaves serve as sinks and older leaves support their development in vegetative stage. Changes of SPAD value at different levels of irradiance showed that highest SPAD value were observed at high irradiance and decreased with decreasing irradiance.

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Flowering Responses to Sequential Short Day/Long Day Exposure in Chrysanthemum (Dendranthema grandiflora Tzvelev) (교호적 단일/장일 처리에 대한 국화의 개화반응)

  • Lee, Byung-Joo;Won, Mi-Kyoung;Lee, Dong-Hee;Shin, Dong-Gi
    • Horticultural Science & Technology
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    • v.19 no.4
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    • pp.560-563
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    • 2001
  • To determine the minimum number of short day (SD) required for flower initiation and development of chrysanthemum, plants were exposed to SD and long day (LD) conditions. Floral development was significantly different between continuous exposure of 16 hour long day (LD) condition and 2 or 4 SD prior to LD in chrysan-themum cvs. Envy and Lady Time, respectively. As more SD exposure was given, final leaf number was decreased and floral stage was advanced, suggesting a facultative response to photoperiodic cycles. Therefore, only 2-4 days of SD were enough to induce flower initiation. After 6 weeks of SD condition, the plants continued anthesis regardless of subsequent photoperiods. The long day leaf number (LDLN) varied between cultivars as 38.0 and 45.4 in Envy and Lady Time, respectively.

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Symbolism of the Plants Depicted in the Flower Wall of Jagyeongjeon at Gyeongbokgung (경복궁 자경전 꽃담에 나타난 화훼식물과 상징성)

  • Kwon, Min-Hyeong;Song, In-Jung;Pak, Chun-Ho
    • Journal of agriculture & life science
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    • v.46 no.2
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    • pp.75-82
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    • 2012
  • This is a study on the flower pattern artwork of the west wall of the Jagyeongjeon in Gyeongbokgung to find out the type of plants and flowers represented and their symbolism. The research was conducted from July 2010 to March 2011 and the artwork classified on the basis of its horticultural traits. A number was assigned to each pattern for analysis: No. 1 is Prunus mume, No. 2 is Prunus persica, No. 3 is Paeonia suffruticosa, No. 4 is Punica granatum, No. 5 and 6 is Dendranthema grandiflora, No. 7 is Rhododendron mucronu and No. 8 is Phyllostachys bambusoides. These 8 flower patterns symbolize longevity and fecundity and their presense around the Jagyeongjeon helped to bestow good fortune on the royal family so that they might live long lives and bear many children. 4 artworks symbolize longevity, 2 artworks symbolize integrity and 1 artwork symbolizes wealth and happiness. There is also symbolism of the need to have constancy in a royal household even during secular change. Out of the 8 artworks, the imagery of a bird and a moon is represented only once, but the image of a butterfly is represented five times in the surrounding elements. The bird and butterfly symbolise freedom and happiness from free love. Women in the palace are like a butterfly wanted to be like love as a freedom and have a free and open relationship like a butterfly. But a harmonious relationship between the royal family wanted to have a symbolic meaning that could be seen of the symbolistic. Based on the "Yangwhasorok"only plants with the highest values, from the 1st and 2nd grades, were used in the artwork of the west wall of the Jagyeongjeon.