• Title/Summary/Keyword: Phalaenopsis

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Bacterial Soft Rot of Dendrobium phalaenopsis and Phalaneopsis Species by Erwinia chrysanthemi

  • Lee, Dong-Hyun;Kim, Jung-Ho;Lee, Jae-Hong;Hur, Jae-Seoun;Koh, Young-Jin
    • The Plant Pathology Journal
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    • v.15 no.5
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    • pp.302-307
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    • 1999
  • Occurrence of soft rots was observed on Dendrobium phalaenopsis and Phalaenopsis sp. that were grown at the greenhouses in Sunchon and Kwangyang areas, Chonnam province of Korea in 1997 and 1998. Typical soft rot symptom appeared frequently on young plants of D. phalaenopsis and Phalaenopsis sp. Soft rot symptom usually appeared on old leaves of D. phalaenopsis, and extended into whole leaves, accompanying blighting of whole plants. Symptom began as a small water-soaked lesion on old leaves of Phalaenopsis sp., which enlarged rapidly on the leaves and eventually resulted in soft rots of whole plants. The causal organism isolated from the infected lesions was identified as Erwinia chrysanthemi based on its pathogenicity, physiological and biochemical characteristics, and the results of the BIOLOGTM program. The bacterial soft rot caused by e. chrysanthemi was firstly describe din D. phalaenopsis and Phalanopsis sp. in Korea.

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Recent trends in tissue culture and genetic transformation of Phalaenopsis (팔레놉시스 조직배양 및 형질전환 최근 연구동향)

  • Roh, Hee-Sun;Lee, Sang-Il;Lee, Yi-Re;Baek, Sun-Young;Kim, Jong-Bo
    • Journal of Plant Biotechnology
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    • v.39 no.4
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    • pp.225-234
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    • 2012
  • This report describes recent advances in tissue culture and genetic transformation of commercial Phalaenopsis. Recently, an importance of Phalaenopsis has been increased due to its popularity with beautiful flowers and is widely used for pot plants as well as cut-flower. Its use is rapidly enlarging in worldwide. Thus, demands for the release of new elite cultivars in Phalaenopsis have been increased. During the last several decades, some critical progresses have been made in tissue culture and genetic transformation in Phalaenopsis species. Cooperation with these biotechnological methods are supposed to promote the release of commercial Phalaenopsis cultivars in the near future. Until now, no technical review on tissue culture and genetic transformation in Phalaenopsis has been reported in Korea. Therefore, we inquired the brief history and techniques of tissue culture system in Korea.

Optimization of efficient protocorm-like body (PLB) formation of Phalaenopsis and Dendrobium hybrids

  • Soe, Khaing Wah;Myint, Khin Thida;Naing, Aung Htay;Kim, Chang Kil
    • Current Research on Agriculture and Life Sciences
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    • v.32 no.4
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    • pp.179-183
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    • 2014
  • Optimization of the protocorm-like body (PLB) formation of Phalaenopsis and Dendrobium hybrids was performed by determining the effects of plant growth regulators (PGRs) and different parts and division sizes of the PLB. For both genera, the base part was the best for the proliferation of PLBs, yielding the highest number of PLBs on a PGR-free medium for Phalaenopsis and medium containing $0.1{\mu}M$ NAA and $10.0{\mu}M$ BAP for Dendrobium. As regards the division size, four-division sections resulted in a higher PLB formation efficiency for Phalaenopsis, while two-division sections produced a higher PLB formation efficiency for Dendrobium. It is expected that these findings will be applicable to efficient PLB formation of other Phalaenopsis and Dendrobium orchids.

Role of chlorocholine chloride on the in vitro PLBs organogenesis of Phalaenopsis 'Fmk02010'

  • Mehraj, Hasan;Alam, Md. Meskatul;Habib, Sultana Umma;Shimasaki, Kazuhiko
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.173-173
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    • 2017
  • Phalaenopsis orchid is one of the most important flowers in flower industry. We conducted an experiment to find out the response of different concentration of chlorocholine chloride (CCC) for the in vitro regeneration of protocorm like bodies (PLBs) of Phalaenopsis 'Fmk02010'. We used five different concentrations of CCC and these were 0 (control), 0.01, 0.1, 1 and $10mgL^{-1}$ in modified MS medium and cultured for 42 days. We added two major salts ammonium nitrate ($412.5mgL^{-1}$) and potassium nitrate ($950.0mgL^{-1}$) to the MS medium for the modification. Maximum numbers of PLBs were found from media with $0.01mgL^{-1}$ of CCC (15.667) and maximum fresh weight (0.211 g) as well. The 100% PLB formation rate was also found from $0.01mgL^{-1}$ of CCC. We found 58.83% variation in number of PLBs ($R^2=0.5883$) and 47.44% variation in fresh weight ($R^2=0.4744$) to the different CCC concentrations. Our study suggested that increase in the CCC concentration negatively affect the PLBs organogenesis of Phalaenopsis. We can suggest that the addition of very low concentration of CCC in plant culture medium can increase the number, formation rate and fresh weight of PLBs of Phalaenopsis.

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Role of chlorocholine chloride on the in vitro PLBs organogenesis of Phalaenopsis 'Fmk02010'

  • Mehraj, Hasan;Alam, Md. Meskatul;Habiba, Sultana Umma;Shimasaki, Kazuhiko
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.177-177
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    • 2017
  • Phalaenopsis orchid is one of the most important flowers in flower industry. We conducted an experiment to find out the response of different concentration of chlorocholine chloride (CCC) for the in vitro regeneration of protocorm like bodies (PLBs) of Phalaenopsis 'Fmk02010'. We used five different concentrations of CCC and these were 0 (control), 0.01, 0.1, 1 and $10mgL^{-1}$ in modified MS medium and cultured for 42 days. We added two major salts ammonium nitrate ($412.5mgL^{-1}$) and potassium nitrate ($950.0mgL^{-1}$) to the MS medium for the modification. Maximum numbers of PLBs were found from media with $0.01mgL^{-1}$ of CCC (15.667) and maximum fresh weight (0.211 g) as well. The 100% PLB formation rate was also found from $0.01mgL^{-1}$ of CCC. We found 58.83% variation in number of PLBs ($R^2=0.5883$) and 47.44% variation in fresh weight ($R^2=0.4744$) to the different CCC concentrations. Our study suggested that increase in the CCC concentration negatively affect the PLBs organogenesis of Phalaenopsis. We can suggest that the addition of very low concentration of CCC in plant culture medium can increase the number, formation rate and fresh weight of PLBs of Phalaenopsis.

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Black Leaf Spot of Dendrobium phalaenopsis Caused by Fusarium moniliforme (Fusarium moniliforme에 의한 덴파레 검은점무늬병)

  • Lee, Dong-Hyun;Hur, Jae-Seoun;Koh, Young-Jin
    • Research in Plant Disease
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    • v.9 no.3
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    • pp.149-152
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    • 2003
  • Black leaf spot disease occurred on Dendrobium phalaenopsis grown in farmer's fields located in Bonggangmyon, Gwangyang-eup, Jeonnam, Korea. Black small spots occurred on leaves at initial stage of infection and the infected leaves turned yellow from the tip. The yellow leaves were falled, resulting in stem blighting or eventual death of the entire plant. White mycelial colony of the causal fungus grown on potato dextrose agarturned dark violet later and optimum temperature for the mycelial growth was $25^{\circ}C$. The causal fungus isolated from the black leaf spot on D. phalaenopsis was identified as Fusarium moniliforme based on the mycological characteristics and pathogenicity. The fungus also caused same symptoms on leaves of Phalaenopsis sp. and Cymbidium sp. as well sa D. phalaenopsis by wound inoculation. This is the first report on black leaf spot of D. phalaenopsis caused by F.moniliforme in Korea.

Multiple Shoot Formation from Flower Stalk Tissue Culture of Phalaenopsis Hybrids (팔레높시스 화경절편조직 배양에 의한 다신초 형성)

  • Choi, Jin Young;Koh, Jae Chul
    • FLOWER RESEARCH JOURNAL
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    • v.17 no.3
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    • pp.165-171
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    • 2009
  • This experiment was conducted to extend utility of in-vitro culture material stalk and to mass produce uniform plants in Phalaenopsis. The optimal concentration of hyponex medium and plant hormone were examined. The most effective concentration of the hyponex in the flower stalk tissue culture of Phalaenopsis was $4mg{\cdot}L^{-1}$. The most effective concentration of TDZ and BA on the formation of multiple shoots in Phalaenopsis flower stalk culture was $0.3mg{\cdot}L^{-1}$ and $5mg{\cdot}L^{-1}$, respectively. TDZ was more effective for formation of the shoots and multiple shoots than BA at the basic medium with hyponex $4g{\cdot}L^{-1}$.

Cloning and Characterization of a PI-like MADS-Box Gene in Phalaenopsis Orchid

  • Guo, Bin;Hexige, Saiyin;Zhang, Tian;Pittman, Jon K.;Chen, Donghong;Ming, Feng
    • BMB Reports
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    • v.40 no.6
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    • pp.845-852
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    • 2007
  • The highly evolved flowers of orchids have colorful sepals and fused columns that offer an opportunity to discover new genes involved in floral development in monocotyledon species. In this investigation, we cloned and characterized the homologous PISTALLATA-like (PI-like) gene PhPI15 ($\underline{Ph}alaenopsis$ $\underline{PI}$ STILLATA # $\underline{15}$), from the Phalaenopsis hybrid cultivar. The protein sequence encoded by PhPI15 contains a typical PI-motif. Its sequence also formed a subclade with other monocot PI-type genes in phylogenetic analysis. Southern analysis showed that PhPI15 was present in the Phalaenopsis orchid genome as a single copy. Furthermore, it was expressed in all the whorls of the Phalaenopsis flower, while no expression was detected in vegetative organs. The flowers of transgenic tobacco plants ectopically expressing PhPI15 showed male-sterile phenotypes. Thus, as a Class-B MADS-box gene, PhPI15 specifies floral organ identity in orchids.

Vegetative Growth Characteristics of Phalaenopsis and Doritaenopsis Plants under Different Artificial Lighting Sources

  • Lee, Hyo Beom;An, Seong Kwang;Lee, Seung Youn;Kim, Ki Sun
    • Horticultural Science & Technology
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    • v.35 no.1
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    • pp.21-29
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    • 2017
  • This study was conducted to determine the effects of artificial lighting sources on vegetative growth of Phalaenopsis and Doritaenopsis (an intergeneric hybrid of Doritis and Phalaenopsis) orchids. One - month - old plants were cultivated under fluorescent lamps, cool - white light - emitting diodes (LEDs), or warm - white LEDs at 80 and $160{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$. The blue (400 - 500 nm) : green (500 - 600 nm) : red (600 - 700 nm) : far - red (700 - 800 nm) ratios of the fluorescent lamps, cool-white LEDs, and warm-white LEDs were 1 : 1.3 : 0.8 : 0.1, 1 : 1.3 : 0.6 : 0.1, and 1 : 2.7 : 2.3 : 0.4, respectively. Each light treatment was maintained for 16 weeks in a closed plant-production system maintained at $28^{\circ}C$ with a 12 h photoperiod. The longest leaf span, as well as the leaf length and width of the uppermost mature leaf, were observed in plants treated with warm-white LEDs. Plants grown under fluorescent lamps had longer and wider leaves with a greater leaf span than plants grown under cool-white LEDs, while the maximum quantum efficiency of photosystem II was higher under cool-white LEDs. The vegetative responses affected by different lighting sources were similar at both 80 and $160{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$. Leaf span and root biomass were increased by the higher light intensity in both cultivars, while the relative chlorophyll content was decreased. These results indicate that relatively high intensity light can promote vegetative growth of young Phalaenopsis plants, and that warm - white LEDs, which contain a high red-light ratio, are a better lighting source for the growth of these plants than the cool-white LEDs or fluorescent lamps. These results could therefore be useful in the selection of artificial lighting to maximize vegetative growth of Phalaenopsis plants in a closed plant - production system.

Effect of CO2 Concentration and Fertilization Time on the Growth of Potted Phalaenopsis (CO2 처리농도 및 공급시간이 분화 호접란의 생육에 미치는 영향)

  • Hwang, Seung Jae;Jeong, Byoung Ryong
    • FLOWER RESEARCH JOURNAL
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    • v.17 no.1
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    • pp.29-35
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    • 2009
  • The study was conducted to examine effective concentration and fertilization time of $CO_2$ for the growth of potted Phalaenopsis in growth chambers. Enrichment level of $CO_2$ was 1,000 or $2,000{\mu}mol{\cdot}mol^{-1}$ and fertilization time was 06:00~12:00, 00:00~06:00, or 18:00~24:00. Two, seven, or twelve month-old clonal micropropagules of Phalaenopsis cultivars were cultured for 99 days. Leaf number, leaf length, leaf width, root length and fresh weight of all Phalaenopsis cultivars in $2,000{\mu}mol{\cdot}mol^{-1}$ $CO_2$ were significantly greater than that of $1,000{\mu}mol{\cdot}mol^{-1}\;CO_2$. $CO_2$ fertilization time was the greatest growth in 0:00~06:00.