• Title/Summary/Keyword: 위황병

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Development of Safety Cropping System for Cabbage(Brassica oleracea L. var capitata) by Soil Solarization on the Producing District of Cheju Area (태양열 토양소독에 의한 양배추 안정재배 기술 개발)

  • 장전익;강영길;오승진;양성석;오대민;진석천;김우일;문영인
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1998.10a
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    • pp.73-76
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    • 1998
  • 제주도 월동 채소규중 양배추는 주산지 에서 10-20년 연작해 오고 있어 최근 연작장해의 하나인 위황병 발생으로 재배농가에 막대한 피해를 주고 있다. 이 위황병은 농약에 의한 살균 방법이 아직 없고 농약에 의한 토양소독은 가능하나 환경오염과 비용부담으로 사용에 제한적이므로 친환경성에너지 방법으로 예방 할 수 있는 기술 개발이 필요하다. (중략)

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Effect of Planting Data and Density on Growth and Yield of Cnidium officinale Makino (日川穹의 定植期와 裁植距籬가 生育 및 收量에 미치는 影響)

  • 정상환
    • Korean Journal of Plant Resources
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    • v.10 no.2
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    • pp.159-164
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    • 1997
  • Field experiment for two years was conducted at Ulleung island to determine the optimum planting date and density of Cnidium officinale Makino. Early planting(Mar. 20) showed the highest yield by 2,880kg per ha as dry wt. Planting time after Mar. 20 was decreased. Late planting had higher occurrence of diseases and insect damage. Early planting had higher extract contents than late planting without violation of the Korean crude drug regulation such as ash contents. Although plants grew better in lower density, they had fewer growing points per plant which actually determine the yield components. Planting density did not affected extract contents in Cnidium officinale Makino. High density planting($35\times15cm$)yielded 33% than those of lower planting density($45\times25cm$).

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Development of an Efficient Method of Screening for Watermelon Plants Resistant to Fusarium oxysporum f. sp. niveum (수박 덩굴쪼김병에 대한 효율적인 저항성 검정법 개발)

  • Jo, Eun Ju;Lee, Ji Hyun;Choi, Yong Ho;Kim, Jin-Cheol;Choi, Gyung Ja
    • Horticultural Science & Technology
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    • v.33 no.3
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    • pp.409-419
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    • 2015
  • This study was conducted to establish an efficient screening method for watermelon plants resistant to Fusarium wilt (FW), which is caused by Fusarium oxysporum f. sp. niveum (Fon). An HA isolate was prepared from a wilted watermelon plant in Haman-gun and identified as F. oxysporum f. sp. niveum based on morphological characteristics, molecular analyses of ITS (internal transcribed spacer) and TEF (translation elongation factor $1{\alpha}$) sequences, and host specificity on cucurbits including watermelon, melon, oriental melon, and cucumber. The assay for disease response of watermelon differentials indicated that the HA isolate was race 0. Among seven liquid media tested, the highest amount of Fon spores was produced from V8-juice broth, which was selected as a medium for mass production of Fon. The disease assay for 21 watermelon and 11 watermelon-rootstock cultivars demonstrated that 20 watermelon cultivars except for 'Soknoranggul' were susceptible; 'Soknoranggul' was moderately resistant. All the tested rootstock cultivars were highly resistant to the HA isolate. The evaluation of disease development depending on various conditions suggested that an efficient screening method for FW resistance in watermelon plants is to dip the roots of 10-day-old seedlings in spore suspension of $1.0{\times}10^5-1.0{\times}10^6conidia{\cdot}mL^{-1}$ for 30 min., to transplant the seedlings to plastic pots with a fertilized soil, and then to cultivate the plants at $25^{\circ}C$ for 3 weeks.

Development of highly uniform variety for processing using SSR markers in radish (Raphanus sativus L) (분자표지를 활용한 고품질 가공용 고순도 무 품종 육성)

  • Jung, Un-Hwa;Oh, Jong-Hyuck;Kim, Young-Gyu;Ahn, Chun-Hee;Lee, Kwang-Sik;Choi, Su-Ryun;Lim, Yong-Pyo;Park, Su-Hyoung;Choi, Ki-Young;Lee, Yong-Beom
    • Journal of Plant Biotechnology
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    • v.41 no.1
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    • pp.56-63
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    • 2014
  • Using commercial radish varieties for processing, about 30% of radish was discarded due to the root shape and low purity. To raise the processing ability, we tried to develop a new variety producing H-shaped root. As another characteristic required in variety for processing is high purity, we tried to raise purity using simple sequence repeats (SSR) markers for testing seed purity in every segregating generation. To develop Male-sterile (MS) seeding parent, we crossed commercial variety of 'Gwan dong spring' and 'Gyeo ryong spring'. One elite inbred was selected as recurrent parent for the MS plant. The major horticultural traits of selected inbred line were disease resistance, late bolting, heat resistance and bright green root top color. To develop pollen parent, we crossed commercial variety of 'Tae sang king' and 'Seoul spring'. We used individual selection method to develop H-shaped hard root and disease resistant inbred. In each segregating generation, we selected one plant based on phenotype and the uniformity of selected plant was tested by SSR markers using self-pollinated seeds. In the first segregating generation, 64.6% of sib plants shared the same band in PCR amplification using ACMP-490 primer and 66.7% using cnu-316 primer. The uniformity of segregating generations using ACMP-490 and cnu-316 raised in second generation to 68.8%, 70.8%, respectively; in third generation to 93.8%, 100%; in fourth generation to 93.8%, 100%; in fifth generation to 95.8%, 100%; in sixth generation to 100%, 100%. A novel cross was made using selected MS parent and pollen parent. When we checker the horticultural traits using autumn cultivation, the novel cross variety produced H-shaped root comparing other commercial varieties and produced highly uniform radish. Thus we registered this novel cross variety as 'YR ORE' at 2013 (Registration No. 4550).

Resistance Degree of Radish Cultivars to Fusarium oxysporum f. sp. raphani according to Several Conditions (발병조건에 따른 무 품종들의 시들음병에 대한 저항성 차이)

  • Baik, Song-Yi;Jang, Kyoung-Soo;Choi, Yong-Ho;Kim, Jin-Cheol;Choi, Gyung-Ja
    • Horticultural Science & Technology
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    • v.29 no.1
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    • pp.48-52
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    • 2011
  • This study was conducted to establish the efficient screening system for resistant radish to Fusarium oxysporum f. sp. raphani. Five radish cultivars ('Myoungsan', 'Chungdu', 'Jangsaeng', 'Hannongyeorm', and 'Chungsukungjung') showing different degree of resistance to the fungus were selected. And the development of Fusarium wilt of the cultivars according to several conditions such as root wounding, dipping period of roots in spore suspension, inoculum concentration, and incubation temperature to develop the disease was tested. In distinguishing the resistance degree of the radish cultivars to the disease, non-cut roots were more effective than cut roots. And occurrence of Fusarium wilt of the radish plants increased in the proportion to increase of root-dipping period and spore concentration of the fungus. Thus, optimum conditions to differentiate susceptible and resistant cultivars to the disease were root-dipping period of 0.5 hour and spore concentration of $1{\times}10^7\;conidia{\cdot}mL^{-1}$. Disease severity of Fusarium wilt on the cultivars was changed with incubation temperature and the radish seedlings incubated at $25^{\circ}C$ represented the most difference of resistance and susceptibility to Fusarium wilt. From the above results, we suggest that the efficient screening method for resistant radish to Fusarium oxysporum f. sp. raphani would be to dip non-cut roots of fourteen-day-old radish seedlings in spore suspension of $1{\times}10^7\;conidia{\cdot}mL^{-1}$ for 0.5 hour and to transplant the inoculated plants to plastic pots with fertilized soil, and then to incubate the radish plants at a temperature of $25^{\circ}C$ for development of Fusarium wilt.