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        검색결과 12

        1.
        2017.10 KCI 등재 서비스 종료(열람 제한)
        다양한 환경에서 수집한 국내 민들레속 유전자원 수집종의 엽록체 DNA 영역(trnL-trnF와 rps16-trnK) 염기서열을 이용하여 종내․ 간 변이 및 배수성을 구명하여 유전자원 육성의 기초 자료룰 제공하고자 수행하였다. 민들레속 유전자원의 배수성은 털민들레, 서양민들레, 붉은씨서양민들레가 3배체이고, 흰 민들레와 흰노랑민들레는 4배체였다. 염기서열의 길이는 trnLtrnF 영역에서 자생종류인 털민들레, 흰민들레, 흰노랑민들레 가 931 bp에서 935 bp, 서양민들레는 910 bp, 붉은씨서양민들레 는 975 bp로 종간 차이를 나타내었고, 종 특이적 염기서열 88개, 자생종 및 귀화종 특이적 염기서열 41개가 검출되었다. rps16- trnK 영역은 털민들레 882∼883 bp, 흰민들레 875∼881 bp, 흰 노랑민들레는 878∼883 bp 서양민들레 874∼876 bp, 붉은씨서 양민들레는 847∼848 bp로 37개 종특이적 염기서열이 검출되 었다. 염기서열의 유사도는 trnL-trnF 영역에서 0.860∼1.000 사이로 평균 0.949이며, rps16-trnK 영역의 유사도는 0.919∼ 1.000 사이로 평균 0.967이었다. 염기서열을 바탕으로 유연관계를 분석한 결과, trnL-trnF 영역은 크게 자생종류와 귀화종 류로 구분되었으며, 서양민들레와 붉은씨서양민들레는 같은 종 간에 유집되었고, 자생종류는 분리되지 않았으며, rps16-trnK 4개 그룹과 유집되지 않은 5개체로 나뉘었다. 흰노랑민들레는 두 영역 모두 흰민들레와 동일 계통군을 형성하였고, 염기서열 상 두 종간 뚜렷한 차이가 없었다. 유연관계에서 모두 독립적으로 존재한 흰민들레 No. 10 (조계산)과 털민들레 1번(광양)은 민들레 유전자원 육성소재로 활용이 기대된다.
        2.
        2016.10 KCI 등재 서비스 종료(열람 제한)
        The morphological characteristics and genetic relationships among 32 germplasms of Zanthoxylum schinifolium and Zanthoxylum piperitum collected from two farms in Korea were investigated. The traits with the most variability were seed color, leaf size, and spine size. The intraspecific polymorphism of Z. schinifolium and Z. piperitum was 96.5% and 60.3%, respectively. The genetic diversity and Shannon’s information index values ranged from 0.11 to 0.33 and 0.19 to 0.50, with average values of 0.26 and 0.42, respectively. Two ISSR primers (UBC861 and UBC862) were able to distinguish the different species. The genetic similarity matrix (GSM) revealed variability among the accessions ranging from 0.116 to 0.816. The intraspecific GSM for Z. schinifolium and Z. piperitum was 0.177–0.780 and 0.250–0.816, respectively. The GSM findings indicate that Z. schinifolium and Z. piperitum accessions have high genetic diversity and possess germplasms qualifying as good genetic resources for cross breeding. The clustering analysis separated Z. schinifolium and Z. piperitum into independent groups, and all accessions could be classified into three categories. Z. Schinifolium var. nermis belonged to independent groups. Comparison of the clusters based on morphological analysis with those based on ISSR data resulted in an unclear pattern of division among the accessions. The study findings indicate that Z. schinifolium and Z. piperitum accessions have genetic diversity, and ISSR markers were useful for identifying Z. schinifolium and Z. piperitum.
        3.
        2016.09 KCI 등재 서비스 종료(열람 제한)
        Kenaf (Hibiscus cannabinus L.) is an annual herbaceous crop of the Malvaceae family. Recently, kenaf is being used in many diversified applications such as pulp, animal feed, bioplastics and cellulosic biofuel etc. A new cultivar 'Jangdae' was developed by mutation breeding using irradiated with 300 Gy gamma-rays. Jangdae has a few distinguishable characteristics such as early flowering, high seed yield and palmate leaf, compared to wild type (Jinju). The fresh matter (FM) and dry matter (DM) yield of Jangdae are similar to those of Jinju, their seed yield (833.3 kg/ha) is approximately 4 times higher than that of Jinju. In addition, the FM and DM yield of Jangdae are 40% higher than those of early-maturing cultivar (C11). We performed the nutritive value of four kenaf cultivars (Jangdae, Jinju, C11 and Hongma300) at 100 day after seeding. The crude protein content of Jangdae, Jinju, C11 and Honma300 were 10.5, 11.0, 9.4 and 10.6%, respectively. The crude fiber, neutral detergent fiber and acid detergent fiber contents were no significant difference among the cultivars. Jangdae, which afforded both a high biomass and seed yield in South Korea, may be useful as potential source of feed and industrial materials.
        4.
        2016.02 KCI 등재 서비스 종료(열람 제한)
        This study examined radiation damage and the optimal gamma-ray dose for mutation breeding in oat (Avena sativa L. cv. Samhan). The seed germination rate decreased as the dose increased over 500 Gy. The median lethal dose (LD50) was approximately 392 Gy. The median reduction dose (RD50) for plant height, tiller number, root length, and flash weight was 411, 403, 394, and 411 Gy, respectively. The optimal dose of gamma irradiation for inducing oat mutation appears to be in the range 300-400 Gy. We performed the comet assay to observe nuclear DNA damage induced by gamma-ray irradiation. This assay showed a clear difference with gamma-ray treatments. DNA damage increased temporarily 7 days after treatment depending on the dose, while no significant difference was identified in response to 300 Gy 30 days after the gamma-ray treatments. The growth characteristics of the M2 generation decreased as the dose increased over 400 Gy.
        5.
        2015.07 서비스 종료(열람 제한)
        The transposable element is a DNA sequence that can be changed its position within the genome, sometimes it can create or reverse mutations and altering the cell's genome size. Target region amplification polymorphism (TRAP) is a rapid and efficient PCR-based marker technique, which uses bioinformatics tools and expressed sequence tag (EST) database information to generate polymorphic markers around targeted candidate gene sequences. TE-TRAP is a new marker system which used terminal inverted repeat (TIR) instead of targeted candidate gene sequences. Sorghum holds a good potential plant organism for transposon tagging due to its small genome size, low amount of repetitive DNA and co-linearity with other cereal genomes, which allows the use of information derived from sorghum in other cereal grasses. IS2868 of sorghum accession was treated Gamma irradiation on seed. To define availability and utilization of TE-TRAP, twenty-one accessions were used to evaluate the genetic diversity and underlying relationships. One-thousand thirty-three TE-TRAP markers were amplified by thirty-one primer combination. Altogether, 712 (62.8%) markers were observed polymorphic segregation, whereas 421 (37.2%) showed monomorphic patterns. To estimate genetic differentiation of population by various gamma radiation doses, the analysis of molecular variance (AMOVA) was performed using 4 to 5 different radiation doses population of M1 sorghum individuals. This study and marker system will provide valuable information to assist radiation mutation breeding.
        6.
        2015.07 서비스 종료(열람 제한)
        This study was carried out to determine the amount of lignin, cellulose, and hemicellulose in six kenaf cultivars during different harvesting stages. Three mutant cultivars (Jangdae, Jeokbong and Baekma), two original cultivars (Jinju, C14), and one Chinese cultivar (Auxu) were planted on May 14, 2013. Four harvesting times were made at intervals of 20 days from 15 July to 16 September, 2013. The overall growth characters of mutant cultivar ‘Jeokbong’ such as plant height, stem diameter, flowering time, and dry mass were similar with those of the original variety. The mutant cultivar ‘Baekma’ occurred 10-day late flowering in comparison with the original variety and also displayed higher dry mass than the original variety. Jinju, Auxu and Jangdae, mid-late maturing kenaf cultivars, had high dry weight compared to early maturing cultivars such as Jeokbong, Baekma and C14. In all cultivars, the lignin contents were increased by a late harvest. The Mid-late maturing kenaf cultivars showed high lignin content in comparison with those of the early maturity cultivars. There were no significant differences of cellulose, and hemicellulose content between the cultivars, however cellulose content in stems of these kenaf cultivars were significantly decreased by a late harvest. These results may provide valuable information to assist the parental selection of kenaf breeding.
        7.
        2015.07 서비스 종료(열람 제한)
        Kenaf (Hibiscus cannabinus L.) native to Africa can be used as fiber, food, feedstock and bio plastic. This study was carried out to evaluate the mineral, amino acid and vitamin contents of six selected kenaf cultivars which are enable to produce seed under Korean circumstance. The leaves of three mutant cultivars (Jangdae, Jeokbong and Baekma), two original cultivars (Jinju, C14) and one Chinese cultivar (Auxu) were harvested at flowering time. Mineral components of kenaf leaves, such as calcium, potassium, and mineral, did not showed significant differences among the cultivars. As major amino acids including proline and phenylalanine, significant differences were found in these kenaf cultivars. The Auxu cultivar contained the highest amount of essential amino acid (Phenylalanine, Leucine, Isoleucine, Valine, Methionine and Lysine). The amount of vitamin displayed significant differences such as vitamin E and vitamin K among these cultivars. Especially, Jangdae cultivar contained the highest amount of vitamin E and vitamin K. Thus, these data suggested that Jangdae and Auxu is the most desirable cultivar containing high amount of vitamin and amino acid.
        8.
        2014.07 서비스 종료(열람 제한)
        This study was conducted to determine the optimal dose of gamma-ray for mutation breeding in sorghum (Sorghum bicolor M.). Gamma-rays irradiated to dry seeds with various doses (0 to 1000 Gy) at Korea Atomic Energy Research Institute. Lethal dosage (LD50) was approximately 256 Gy. Significant decreases in growth characteristics (plant height, tiller number and fresh weight) were observed by dose of increased over 300 Gy. Reduction doses (RD50) was approximately 363 Gy in plant height. We also conducted comet assay to observe nucleus DNA damage due to gamma irradiation. In comet assay, a clear difference was identified over 100 Gy treatments. With increasing doses of gamma-ray in the range of 100 to 400 Gy, the rate of head DNA was decreased significantly from 93.52% to 67.57%. The most of the Sorghum cells were severely damaged in the integrity of DNA by gamma-ray. These data provide valuable information when the optimal dose should be chosen for purpose of mutation breeding program of Sorghum.
        9.
        2014.07 서비스 종료(열람 제한)
        This study was carried out to determine the effects of different harvesting stage on nutritive value and the quality of ensiled kenaf after fermentation among six kenaf cultivars. Six kenaf cultivars including two different maturity groups, mid-late maturing (Auxu, Jangdae and Jinju) and early-maturing (Baekma, Jeokbong and C14), were planted on May 14, 2013. Four harvesting times were made at intervals of 20 days from 15 July to 16 September, 2013. In all cultivars, the CP (crude protein) contents were decreased by a delayed harvest; the CP contents of kenaf silage were ranged from 92 to 184 g kg-1. Interestingly, there were no significant difference of NDF (neutral detergent fiber) and ADF (acid detergent fiber) content between the cultivars, however NDF and ADF content of kenaf silage were significantly increased by a late harvest. The silages of all cultivars displayed a low pH ranges less than 4.0, which is sufficient for stable storage. The lactic acid contents in Auxu were from 2.57 to 3.21%, which is higher than other cultivars. The harvesting stages did not affect to the concentrations of butyric acid and acetic acid in all cultivars. These results indicate that the harvesting stage is more important for the quality of kenaf silage than cultivar differences. And kenaf silage could be also used as fodder for ruminants.
        10.
        2013.03 KCI 등재 서비스 종료(열람 제한)
        기내배양한 양란 심비디움 원괴체에 전자빔(2 MeV/n, 0.5 mA)을 10 Gy~300 Gy로 조사하여 생장 변화와 유전적 변이의 다양성을 검토하였다. 전자빔을 조사 후 배양 10주째에 선량의 증가에 따라 원괴체로부터 신초유도가 감소하였고, 200 Gy 이상의 선량을 조사한 처리구에서는 신초분화가 크게 억제되었다. 원괴체 18개체를 ISSR 분석한 결과 대조구는 12.5% 다형성을 나타내었고, 전자빔 조사구에서는 42.2%의 다형성을 나타내었다. RAPD 분석한 결과 대조구에서 13%의 다형성을 나타내었고, 전자빔 조사구에서는 43.8%의 다형성을 나타내었다. 따라서 RAPD 및 ISSR 분석 모두에서 전자빔 조사시 대조구보다 3.5배 정도 다형성이 증가한 것으로 나타났다. 유전적 유사도 지수(GSM)는 전자빔 처리가 대조구보다 낮게 나타나 전자빔 처리에 의하여 개체들 간의 유전적 다양성이 높아진 것으로 보인다. 군집분석 결과 RAPD와 ISSR 분석 모두 대조구와 전자빔 처리구가 분리되어 그룹을 이루었다. 이와 같이 전자빔 조사로 기내 배양 양란 심비디움의 유전적 다형성이 증대됨을 확인하였다.
        11.
        2010.04 KCI 등재 서비스 종료(열람 제한)
        Ionizing radiations have been effective mutagen sources to overcome the limitation of the useful genetic resources in natural environment. The study was conducted to investigate an effect of electron beam on organogenesis, growth patterns and genetic variation in the irradiated orchid organs (rhizome and protocorm). The in vitro cultured rhizomes of orchids (Cymbidium goeringii, C. kanran) were irradiated with the electron beam in the dose range of 15Gy to 2240Gy under the condition of various beam energy and beam current (10MeV/n and 0.5mA, 10MeV/n and 0.05mA, 2MeV/n and 0.5mA). Significant decreases in growth and organogenesis were observed by increase of intensity of electron beam irradiation. The irradiation intensity of lethal dose 50 (LD50) of the in vitro cultured orchid was estimated as approximately 500Gy to 1000Gy under 10MeV/n, and 1000Gy to 2000Gy under 2MeV/n. While, the optimal irradiation dose was approximately 100Gy for growth and organogenesis of the cultures under 10MeV/n with 0.05mA treatment, and 300Gy under 2MeV/n and 0.5mA electron beam condition. RAPD and ISSR analyses for the electron beam irradiated organs were performed to analyze genetic variation under the electron beam condition (2MeV/n and 0.5mA).
        12.
        2010.04 KCI 등재 서비스 종료(열람 제한)
        RAPD (random amplified polymorphic DNA) analysis was examined to detect variation of in vitro cultured 30 rhizomes of Cymbidium goeringii and Cymbidium kanran, with long-term subculture, respectively. Out of 105 DNA bands detected, the 38 were polymorphic with a polymorphic rate 36.1% in the C. goeringii. Out of 126 DNA bands detected, the 58 were polymorphic with a polymorphic rate 46.0% in the C. kanran. The size of the amplified fragments of the two species ranged from about 200bp to 3,000bp. Genetic similarity matrix (GSM) shows from 0.810 to 1.00 with an average of 0.929 in the rhizomes of C. goeringii and 0.786 to 0.984 with an average of 0.915 in the C. kanran. The result indicate that the long-term in vitro cultured C. goeringii and C. kanran supplemented with growth regulators might be promoted in higher polymorphism and increased GSM. Thus, the higher polymorphism rate of in vitro cultured rhizomes might be resulted in long-term subculture and the plant growth regulators supplemented with the culture medium. The results provide as fundamental data to develop a new materials for plant breeding and resources plant.