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        검색결과 124

        51.
        2015.02 KCI 등재 서비스 종료(열람 제한)
        Shading and soil environment are the main factors of growth and yield in ginseng (Panax ginseng C. A.Meyer). Ginseng yield is directly related to survival rate because of increased missing plant for their growing period. Underfield conditions, diseases and pests significantly affect plant survival rate. We evaluated the seedling establishment, growthand ginsenoside of the ginseng plants, under controlled management conditions in a plastic greenhouse, when their treatedwith different types of organic matter. Ginseng seeds were sown at a rate of three seeds per hole, and the seeding space mea-sured 10㎝×15㎝. Compared to the control, treatment of cattle manure vermicompost (CMV) was shown to increaseseedling establishment and decrease ginsenoside content. Root weights of plants treated with CMV were higher than those ofplants treated with other types of organic matter. In addition, seedling establishment of 2-year-old ginseng plants wasdecreased when it was compared to that of 1-year-old ginseng plants. Our results indicated that organic matter type and ratewere associated with seedling establishment, growth characteristic and ginsenoside content in greenhouse of ginseng direct-sowing culture.
        52.
        2014.12 KCI 등재 서비스 종료(열람 제한)
        인삼 개갑종자의 초저온보존 효과 및 최적조건을 구명하기 위하여 건조 조건과 수분함량 및 액체질소 보존 전 동결처리와 보존 후 해동처리에 따른 초저온보존 효과를 조사하였다. 건조처리는 25℃ air flow 챔버(RH 10~12%)와 15℃ 건조실(RH 22~25%)을 이용하여 실시하였고 보존 전 동결은 –24℃에서 30일간 처리하였으며 보존 후 해동은 4℃에서 24시간, 40℃에서 2분 처리구를 각각 비교하였다. 그 결과 15℃에서 종자수분 8-12%로 건조된 종자가 보존 전 처리 없이 액체질소에 보존된 후 40℃에서 해동되었을 때 발아율이 가장 높은 것으로 나타났다. 그러나 종자수분이 2.2% 이하일 때 건조가 지속되면 발아율은 감소하는 것으로 나타났으며, 4% 이하에 이르면 보존 전후 처리효과는 나타나지 않는 것으로 조사되었다. 반면 25℃에서 건조된 종자는 상대적으로 높은 발아율을 유지하였다. 건조 및 초저온보존에 의한 인삼 개갑 종자의 유근 및 자엽 생장율을 조사한 결과, GA배지 치상 10일 후 무처리한 대조구에서 첫 유근이 출현하였으며 3주 후에는 자엽발달이 시작되었다. 30일째에는 자엽생장율이 유근발달과 함께 유의하게 증가하는 것으로 나타났다. 치상 30일까지 초저온보존에 의한 생장율은 같은 양상을 보이면서 대조구보다 현저히 낮게 나타났으나 40일째에는 양상은 같았으나 회복율이 대조구보다 증가세를 보였다. 또한 보존 전 동결처리 없었던 종자는 동결처리한 종자보다 모든 처리구에서 높은 유근 및 자엽 생장율을 보였다.
        53.
        2014.12 KCI 등재 서비스 종료(열람 제한)
        This study describes the efficient method for the discrimination of 'Cheonryang' in Panax ginseng Meyer using a STS primer. A total of 208 STS primers were applied to polymerase chain reaction (PCR) amplification for discriminating Korean ginseng cultivars. Co-dominant polymorphic band patterns were generated with two primers, MFGp 0019, MFGp 0248, and successful identification of 'Cheonryang' was achieved from out of 11 Korean ginseng cultivars. Two different sizes of DNA band patterns were detected with MFGp 0019 primer. Ten Korean ginseng cultivars shared the same size of amplified DNAs (389 bp), but 'Cheonryang' showed a different size. Thus 'Cheonryang' can be efficiently distinguished from the other ten ginseng cultivars by using the MFGp 0019 primer. In the case of MFGp 0248, two different sizes of DNA band patterns were detected in the eleven ginseng cultivars. Same sized amplified DNA bands (307 bp) were shown in five cultivars (Chunpoong, Gopoong, Kumpoong, Cheongsun, Sunhyang) and 254 bp sized DNA bands were identified in the other 6 cultivars (Yunpoong, Sunpoong, Sunun, Sunone, Cheonryang, K-1). In conclusion, the two STS primers, MFGp 0019, and MFGp 0248, provide a rapid and reliable method for the specific identification of 'Cheonryang' cultivar from a large number of samples.
        54.
        2014.12 KCI 등재 서비스 종료(열람 제한)
        This study was performed to identify optimal harvesting time of ginseng seeds and to examine the effect of GA3 treatment for improvement of seed stratification rate. Ginseng seeds harvested from Land race, Chunpoong and Yunpoong cultivar in July 20 were tested for stratification rate. It was shown that stratification rates of land race, Yunpoong and Chunpoong cultivar were 94.1%, 93.1%, and 82.6%, respectively. Seeds of Chunpoong cultivar harvested 10-15 days later showed a comparable stratification rate to that of Land race, indicating that late harvest of Chunpoong seeds is beneficial for the increase of stratification rate. The higher stratification rate was found in mature seeds (92.3%) than immature seeds (37.8%), both of which were harvested in July 20. Stratification rate of mature seeds harvested in July 15 was 87.5%, demonstrating optimal harvesting time of ginseng seeds with higher stratification rate is after mid-July. An exponential growth of endosperms of ginseng seeds was observed from early June to mid-June and then slow growth was observed. There was no obvious growth of embryos from fertilization to mid-August. After the this time, embryos quickly grew until late October. Thus, appropriate stratification control is essential during the period (from early September to late October) in order to optimize embryo growth and development. While no increase of stratification rate was observed in seeds treated with 50 ppm of GA3, significant increases were observed in seeds treated with 100 ppm of GA3. At this concentration of GA3, the stratification rate of Land race, Chunpoong and Yunpoong cultivar was 95.0%, 95.3%, and 96.5%, respectively.
        55.
        2014.10 KCI 등재 서비스 종료(열람 제한)
        Salt stress is one of the major abiotic stresses affecting the yield of ginseng (Panax ginseng C. A. Meyer). The objective of this study was to identify bio-marker, which is early responsive in salt stress in ginseng, using proteomics approach. Ginseng plants were exposed to 5 ds/m salt concentration and samples were harvested at 0, 6, 12 and 18 hours after exposure. Total proteins were extracted from ginseng leaves treated with salt stress using Mg/NP-40 buffer and were separated on high resolution 2-DE. Approximately 1003±240 (0 h), 992±166 (6 h), 1051±51 (12 h) and 990±160 (18 h) spots were detected in colloidal CBB stained 2D maps. Among these, 8 spots were differentially expressed and were identified by using MALDI-TOF/TOF MS or/and LC-MS/MS. Ethylene response sensor-1 (spot GL 1), nucleotide binding protein (spot GL 2), carbonic anhydrase-1 (spot GL 3), thylakoid lumenal 17.9 kDa protein (spot GL 4) and Chlorophyll a/b binding protein (spot GL 5, GL 6) were up-regulated at the 12 and 18 hour, while RuBisCO activase B (spot GL 7) and DNA helicase (spot GL 8) were down-regulated. Thus, we suggest that these proteins might participate in the early response to salt stress in ginseng leaves.
        56.
        2014.10 KCI 등재 서비스 종료(열람 제한)
        This study was conducted to find out the optimum composition of nursery soil for raising seedling of ginseng (Panax ginseng C. A. Meyer). Total 9 kinds of raw materials were used such as peat-moss, perlite, leaf mould, rice bran, gull's guano, castor-oil plant bark, palm bark, cow manure and chicken manure for optimum composition of nursery soil in ginseng. Occurrence of damping-off in ginseng was lowered about 50% in nursery soil type 1, 2 and 4 than in other types nursery soil in June, and occurrence rate of rusty root also lowest in nursery soil type 1. As the salinity of nursery soil increased, so did the occurrence of physiological disorder in ginseng seedling. The cause of salinity increasing in nursery soil has closely relation to NO3-N, P2O5 and Na+ content. Plant height, root length, diameter and weight were longer and heavier in nursery soil type 1 (mixing ratio of peat-moss, perlite and leaf mould was 50 : 20 : 30 based in volume) than in other types of nursery soil. So nursery soil type 1 was selected for raising seedling of ginseng. pH and electric conductivity (EC) of selected nursery soil type 1 was 5.55 and 0.13 dS/m. Contents of NO3-N and P2O5 were 21.0 and 40.0 mg/L, and K+ 0.36, Ca2+ 3.38, Mg2+ 2.01 and Na+ 0.09cmol+/L, respectively.
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