• 제목/요약/키워드: Variation plant

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벼 악배양 효율의 품종간 차이와 식물체 재분화 능력의 유전 (Varietal Difference and Inheritance of Plant Regenerability in Anther Culture of Rice)

  • 권용삼;손재근
    • 식물조직배양학회지
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    • 제27권3호
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    • pp.163-167
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    • 2000
  • 벼 약배양에서 식물체 재분화 능력의 품종간 차이와 유전 양식에 대해 연구한 결과는 다음과 같다. ‘일미벼’ 외 46품종의 녹색체 재분화율은 자포니카형이 통일형이나 인디카형보다 높게 나타났고, 동일 품종 생태형간에도 배양 효율은 다양한 변이폭을 나타내었다. 자포니카 품종중에서 ‘일미벼’와 ‘향남벼’는 각각 19.4%와 18.1%의 높은 재분화 능력을 나타내었다. ‘밀양 23호’와 ‘추청벼’가 교배된 F$_2$집단의 녹색체 재분화율은 평균 6.6%로 나타났고 0~33.3%까지 넓은 변이폭을 가지는 연속적인 빈도 분포양상을 나타내었다. 캘러스 형성률과 식물체 재분화 능력에 대해 추정된 광의의 유전력은 각각 72.8%와 82.7%로 추정되었다.

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멸종위기 희귀식물인 갯방풍 자생지별 유전변이 및 유전적 다양성 연구 (Geographical Variation and Genetic Diversity of Glhenia littoralis Fr. Schmidt et Miquel based on the Analysis of Internal Transcribed Spacer(ITS) sequence and Random Amplified Polymorphic DNA(RAPD))

  • 문병철;추병길;지윤의;윤택숙;김호경
    • 한국한의학연구원논문집
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    • 제14권3호
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    • pp.49-56
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    • 2008
  • Glehnia littoralis Fr. Schmidt et Miquel is an important medicinal plants in East Asian countries. This plant species naturally distributed in Korea, Japan, China, and Taiwan, but it is a rare plants living in the coastal dune in Korea. To investigate the genetic variation, genetic diversity and genetic evolutionary relationships of 14 different geographical G. littoralis, ITS sequence and random amplified polymorphic DNA (RAPD) were analyzed. On the basis of ITS sequences, it was clearly showed that the ITS1 and ITS2 sequences among 14 populations are identical regardless of geographical origin excepting 2 bp in pair-wise comparison of ITS1. Furthermore, RAPD results also showed that 14 different geographical G. littoralis produce various polymorphic patterns without critical relationship among neighboring regions. These combined results suggest that the geographical variation and genetic evolution of G. littoralis is stable and provide important information on genetic diversity, and conservation of this rare plant species in situ and ex situ.

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고흥지방 기상요인과 감자의 생육 및 수량과의 관계 (Relationship between Meteorological Elements and Yield of Potato in Goheung Area)

  • 권병선;박희진;신종섭
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2000년도 춘계임시총회 및 학술발표대회
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    • pp.26-33
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    • 2000
  • This study was conducted to investigate the relationships between yearly variations of elimatic elements and yearly variations of productivity in potato. In addition, correlation coefficients among yield and yield components were estimated. The data of yield and yield components were investigated for 9 years from 1987 to 1995. The meteorological data what gathered at the Goheung Weather Station for the same period of crop growing season were used to find out the relationships between climatic elements and crop productivity. Yearly variation of the daily minimum temperature in March and April were large with coefficients of variation (C.V.) of 126.0%, 368%, respectively, but the variation of the daily mean and maximum temperature in May and June were relative small. Stem length and number of stem show more C.V. of 9.3%, 14.3%, respectively, but the variation of the yield was relative small with 3.7%. Correlation coefficients between the amount of precipitation in April and yield, yield and daily mean temperature in June were negatively significant at the level of 5, 1 %, respectively. Correlation coefficients between the growth habits and yield are positively significant at the level of 5, 1 %, respectively. Simple linear regression equations by the least square method are estimated for stem length (Yl) and the precipitation in April(X) as Y,=82.47-0.11x (R2=0.3959), and for yield(Y2) and the precipitation in April(X) as Y,=2003.61-0.94X (R2=0.5418).

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Intraspecific genetic variation in Corynandra chelidonii (Angiosperms: Cleomaceae) as revealed by SCoT, ISSR and RAPD analyses

  • Sirangi, Subash;Jogam, Phanikanth;Nemali, Gandhi;Ajmeera, Ragan;Abbagani, Sadanandam;Raju, Vatsavaya S.
    • Journal of Plant Biotechnology
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    • 제47권4호
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    • pp.289-297
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    • 2020
  • The genetic diversity of two subpopulations of Corynandra chelidonii, one of terrestrial and the other of aquatic environments, was measured with molecular markers, such as start codon targeted (SCoT), inter simple sequence repeats (ISSR), and random amplification of polymorphic DNA (RAPD). The traditional morphological traits such as habitat, habit, leaf morphology, the colour of the sepals and petals, number of stamens, and seed morphology formed the base for their realization as two varieties, C. chelidonii var. pallae and C. chelidonii var. chelidonii. The polymorphism between the two variants was 100% with the primers SCoT-2 and OPA-1 and 4, while maximum polymorphism was detected with ISSR-2, SCoT-3, and OPA-3. The study used, for the first time, more than one molecular marker to assess the genetic variation underscoring the morphological variation in Corynandra chelidonii (L.f.) Cochrane & Iltis. The study justifies the recognition of the two subpopulations of Corynandra chelidonii from aquatic and terrestrial environments as two distinct varieties, C. chelidonii var. pallae (Reddy & Raju) V.S.Raju and C. chelidonii var. chelidonii, respectively, based on the traditional taxonomic evidence.