• Title/Summary/Keyword: 콩 품종

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Genotypic Responses to Cytokinin Requirements in Callus Culture of Korean Varieties of Phaseolus vulgaris L. (강남콩(Phaseolus vulgaris L.) 국내품종의 조직배양에서 유전자형에 따른 Cytokinin 요구성)

  • Kim, Sang-Gu
    • Journal of Plant Biology
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    • v.27 no.3
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    • pp.173-178
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    • 1984
  • Callus culture of Phaseolus vulgaris L. was carried out to examine the ability to grow on cytokinin-free medium. Of the sixteen cultivars of P. vulgaris, eight were classified as completely cytokinin-autonomous phenotype and five were found to be cytokinin-dependent phenotype. Intermediate phenotype was shown in three cultivars. Using cv. Palgong and ca 21 as cytokinin-dependent genotypes, the genotype responses to the cytokinin requirements of callus tissue were studied in detail. The callus tissue of cv. Palgong and ca 21 were never habituated in cytokinin-free medium, regardless tissue origin and cytokinin concentration in previous passages. The result suggests that cytokinin dependency of callus tissue of P. vulgaris cv. Palgong and ca 21 may be due to inactivation of cytokinin biosynthetic pathway.

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Ultrastructural Comparison of Soybean differentials Infected with a Virulent SMV Strain (병독성 콩모자이크바이러스계통에 감염된 콩판별품종의 미세구조의 비교)

  • Cho, E.K.;Martin, E.M.;Goeke, S.C.;Kim, K.S.
    • Korean Journal Plant Pathology
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    • v.14 no.6
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    • pp.563-566
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    • 1998
  • Two soybean cultivars, Kwanggyo and Hwanggeum (soybean mosaic potyvirus (SMV)-resistant cultivars), that had been inoculated with a virulent strain (G-5H, 4) of soybean mosaic potyvirus produced necrotic lesions on inoculated leaves as well as on upper trifoliate leaves. Cells in the lesion area contained sparse numbers of virus particles and very few characteristic pinwheel inclusions. Although a hypersensitive-like cellular response occurred in the two resistant cultivars, this response did not prevent the virus from spreading systemically in these resistant hosts, indicating a different mechanism from the general hypersensitive reaction in relation to host resistance.

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Seed Development and Germinability of Soybeans at Various Filling Stages (등숙기간중 콩의 종실발달과 발아능력)

  • Park, Keun-Yong;Park, Hee-Woon
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.29 no.4
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    • pp.416-421
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    • 1984
  • Six soybean cultivars were used to study their seed development and germinability after flowering, in 1977 and 1978. The earlier varieties showed the faster seed development, but indeterminate types resulted in slower development. The earliest germinability was found in 15 to 25 days after flowering when dried with the pod shell. The germination of the seeds dried without pod shell, however, was inhibited significantly in early seed filling stages. Regular germinability of the Hill cultivar in a cold test was 40-45 days after flowering, or 10 to 15 days earlier than the physiological maturity.

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Introduction of Stay Green Mutant for the Development of Black Seed Coat and Green Cotyledon Soybean Variety (녹색자엽 검정콩 품종 육성을 위한 Stay green 변이체 활용)

  • Kang, Sung-Taeg;Seo, Min-Jung;Moon, Jung-Kyeong;Yun, Hong-Tae;Lee, Young-Ho;Kim, Si-Ju;Hwang, Young-Sun;Lee, Suk-Ki;Choung, Myoung-Gun
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.55 no.3
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    • pp.187-194
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    • 2010
  • The soybean stay green mutant genotype (SSG) derived from the nuclear gene, d1d2, and cytoplasmic gene, cytG, inhibit the breakdown of chloroplast in the leaves, pod walls, seed coats, and embryos during maturity. Soybean seed with black seed coat and green cotyledon (SBG) are preferred than black seed coat with yellow cotyledon (SBY) especially for cooking with rice and as source of traditional food in Korea. The researchers evaluated the seed's chlorophyll content of SSG and introduced SSG to the SBG variety breeding program. The seed chlorophyll content of SSG with d1d2 was $39.93{\sim}60.80\;{\mu}g/g$ and SSG with cytG $38.08{\sim}39.89\;{\mu}g/g$. The Korean SBG variety which was derived from SSG with cytG, contains $16.35{\sim}37.73\;{\mu}g/g$. The composition of seed chlorophyll differs according to the genetic background of SSG genotype. Inheritance study showed that cotyledon color was segregated 15:1 (yellow:green) at $F_2$ seed indicating two recessive genes control green cotyledon as revealed by previous study. Only less than 3% soybean lines showed black seed coat with green cotyledon among crosses SBY and SSG (d1d2). Results showed that SSG with d1d2 can be used as a good source for SBG with high chlorophyll content in the seed cotyledon, but due to the complex genetic behavior, breeding resource of SBG with d1d2 should be prepared to improve the breeding efficiency for development SBG variety.

Effects of Soil Moisture Content on Leaf Water Potential and Photosynthesis in Soybean Plants (토양성분이 콩의 잎 수분포텐셜 및 광합성에 미치는 영향)

  • 류용환;이석하;김석동
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.41 no.2
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    • pp.168-172
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    • 1996
  • The soil moisture content and its relation to plants may be important in determining the crop growth and yield. The present study was undertaken to evaluate the leaf water potential and photosynthetic activity in soybean plants as affected by the timing of soil water stress. The soybean variety, 'Tachinagaha', was grown in a pot. The 15 day-old seedlings were subject to the three levels of soil moisture content(25, 40 and 55%) for 25 days. Then the treated soybean plants were placed again at the level of 25% soil moisture content for 25 days, and were compared with the control which was well-watered at 40% level for whole growth period. Soybean plants grown under continuous drought showed higher apparent photosynthetic rate(AP) than those under well-watering /drought in the first /second water treatment, suggesting that AP was adjusted after previous acclimation to drought. Over a wide range of photosynthetic photon flux densities(PPFD), drought or excessive water stress resulted in the decrease in AP when compared with the control. AP and stomatal conductance were decreased in soybean plants subject to water deficit stress, suggesting that AP and stomatal conductance were more sensitive to drought than excessive water stress.

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