• Title/Summary/Keyword: degree of leaf tobacco

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Effect of Yellowing Times During Yellowing Stage on Physico-chemical Properties of Immature Tobacco Leaves in Bulk Curing (Bulk건조시 미숙엽의 황변시간 조절이 잎담배 이화학성에 미치는 영향)

  • 이철환;진정의;한철수;이승철
    • Journal of the Korean Society of Tobacco Science
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    • v.21 no.1
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    • pp.10-16
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    • 1999
  • Leaves harvested were separated with visual characters into 2 classes such as immature and mature leaves. In the curing process, the prolonged yellowing treatment during yellowing stage was automatically controlled at the different stalk position, and condition of curing process after this period was all the same with conventional ones. In case of prolonged yellowing in immature leaves, increase of price per kg reached to 8 % compared with those of conventional ones. In physical properties, filling capacity and shatter index was decreased with the degree of maturity, and it was equal level in filling capacity of immature leaves between curing method, while shatter index was decreased in prolonged yellowing treatment than that of conventional ones. There was no difference in chemical components between immature leaves of prolonged yellowing and conventional ones. As to the prolonged yellowing of immature leaves, there was decreased in citric and malic acid contents of the nonvolatile organic acids, and it was equal level in all higher fatty acids content of leaves cured by prolonged yellowing treatment compared with in that of conventional curing method. The contents of key compounds such as solanone, damascenone, damascone in the essential oil were lower in prolonged yellowing of immature leaves than those of mature leaves cured by conventional ones.

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Effects of Urea Rate and Maturity on the Yield, Quality, Nitrogen Compound and Nitrate Reductase Activity of Burley Tobacco (요소증비와 숙도의 차이가 버어리종 잎담배의 수량, 품질, 질소화합물 및 Nitrate Reductase의 활성에 미치는 영향)

  • Kim, Yong-Kyoo;Rhu, Jeom-Ho;Choi, Sun-Young;Han, Chul-Su
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.33 no.3
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    • pp.209-214
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    • 1988
  • This experiment was carried out to determine the effect of nitrogen rate and maturity on the yield, quality, nitrogen compound, protein pattern, and nitrate reductase activity. The results were as follow. As the nitrogen rate increased, the degree of red color of cured leaf increased. According to the time of harvesting at their leaf position, the price of the lugs is lowest in immature stage compared with mature and over mature stage but the upper leaves were lower than mature and immature stage in price. Yield are equal in immature stage and mature stage but over mature stage is lower than mature and immture stage. There was no different protein pattern and nitrate reductase activity in nitrogen rate and mature stage.

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Overexpression of Rice Chloroplast Small Heat Shock Protein Increases Thermotolerance in Transgenic Plants (벼 엽록체 small HSP의 과발현에 의한 형질전환 식물체의 내열성 증가)

  • 원성혜;조진기;이병헌
    • Journal of Life Science
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    • v.13 no.1
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    • pp.83-89
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    • 2003
  • To investigate the function of chloroplast small heat shock protein (HSP), transgenic tobacco plants (Nicotiana tabacum L, cv. SR-1) that constitutively overexpress the rice chloroplast small HSP (Oshsp26) were generated. Effects of constitutive expression of the Oshsp26 on thermotolerance were investigated with the chlorophyll fluorescence. After 5-min incubation of leaf discs at high temperatures, an increase in the Fo level, indication of separation of LHCII from PSII, was mitigated by constitutive expression of the chloroplast small HSP When tobacco plantlets grown in Petri dishes were incubated at $20^{\circ}C$/TEX> for 45 min and subsequently incubated at $20^{\circ}C$/TEX> leaf color of wild-type plant became gradually white and all plantlets were finally died. Under the conditions in which all the wild-type plants died, more than 80% of the transformants remained green and survived. It was also found that the levels of Oshsp26 protein accumulated in transgenic plants were correlated with the degree of thermotolerance. These results suggest that the chloroplast small HSP plays an important role in protecting photosynthetic machinery, as a results, increases thermotolerance of whole plant during heat stress.

Influence of Monochromatic Light on Photosynthesis and Leaf Bleaching in Panax species (단색광이 인삼속 식물의 광합성과 잎표백화에 미치는 영향)

  • Lee Sung-Sik;Proctor John T.A.;Choi Kwang-Tae
    • Journal of Ginseng Research
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    • v.23 no.1 s.53
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    • pp.1-7
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    • 1999
  • Photosynthetic rates and leaf bleaching were measured under light of far-red, red, orange, green, blue and white in order to clarify the effect of light qualities on photosynthesis in Panax species, P. ginseng and P. quinquefolium. Photosynthetic rate of P. ginseng and P. quinquifolium showed higher in the order under the light of red > orange > blue > white > green. Degree of leaf bleaching in P. quinquifolium showed severer in the order under the light of far-red > red > white > blue > orange > green. These suggest that shading material with blue or orange color is good for ginseng growth. As for the effect of temperature, the photosynthesis was increased with increasing temperature untill $25^{\circ}C$ and thereafter decreased. Therefore, it was clarified that the optimum temperature for photosynthesis of P. ginseng and P. quinquefolium was $25^{\circ}C$. And the dark respiration rate of ginseng leaf also increased with increasing air temperature. Especially, the dark respiration rate increased by $80\%$ for P. ginseng and by $73\%$ for P.quinquefolium at above $30^{\circ}C$ as compared with $25^{\circ}C$. In general, the photosynthesis rate was higher in P. quinquifolium than in P. ginseng and ranged from 3.54 to 4.04 mg $(CO_2{\cdot}dm^{-2}{\cdot}hr^{-1})$ for P. quinquefolium and from 2.08 to 2.59 mg$(CO_2{\cdot}dm^{-2}{\cdot}hr^{-1})$ for P. ginseng.

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Changes of Nitrogenous Compound According to the Topping Stage and Harvesting Time in Burley Tobacco(Nicotiana tobacum L.) (버어리종 잎담배 순지르기 시기와 수확시기에 따른 질소화합물의 변화)

  • Jang, Soo-Won;Kim, Jae-Hyun;Park, Chang-Jin;Kim, Yoon-Ha;Lee, In-Jung
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.56 no.2
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    • pp.146-150
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    • 2011
  • A large amount of nitrogenous compounds are found in burley tobacco and are responsible for peculiar aroma during smoking. Excess in nitrogen or its compounds such as total nitrogen and proteins in burley tobacco gives a strong pungency and make its taste bad. The present study has focused on improving quality of Burley tobacco by regulating topping and harvesting time of leaf to reduce nitrogen compounds in Burley tobacco. In addition, the early-stage of flower topping had lower level of nitrogenous compound, such as total nitrogen and protein nitrogen, and total tobacco-specific nitrosamine (TSNA) contents compared to the button-stage and full flower-stage topping. Also, the contents of nicotine got significantly decreased while the ether extract was increased as the period of topping got delayed. Regarding the brightness among the colors of cured leaves, the color at the full flower-stage topping was the brightest, and there was no particular difference in red and yellow colors. The harvesting amount was decreased as the period of topping got delayed and there was no significant difference between the topping treatments in terms of the exterior quality. As the harvesting time delayed, the total nitrogen, protein nitrogen, nitrate nitrogen, and ammonium nitrogen were decreased while the nicotine contents got increased. Also, the total TSNA contents were decreased as the harvesting time delayed. However, ether extract was increased. Among the colors of cured leaves, the brightness and degree of yellow color were significantly increased as the harvesting time delayed, and there was no particular difference in the degree of red color. The harvesting amount was decreased along with the delayed harvesting time; however, the harvest of the matured and mellow leaves was higher in terms of price, compared to that of the immature leaves. For the reduction of nitrogenous compound and TSNA contents in Burley tobacco, the topping was examined to be more effective in terms of improvement in chemical contents and quality regardless of the decreased harvesting amount.

Constitutive Expression of Small Heat Shock Protein Increases Thermotolerance in Transgenic Plant (저 분자량 Heat Shock Protein의 항상적 발현에 의한 형질전판 식물체의 고온내성 증가)

  • 이병현
    • Korean Journal of Plant Tissue Culture
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    • v.27 no.1
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    • pp.13-18
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    • 2000
  • To investigate the function of chloroplast small HSP, transgenic tobacco plants (Nicotiana tabacum L. cv. Samsun) that constitutively overexpress the chloroplast small HSP (NtHSP21) from N. tabacum cv. Petit Havana SR1 were generated. Five homozygous lines of transformants showing different constitutive expression levels of the NtHSP21 were selected. To determine whether constitutive overexpression of NtHSP21 protein affects thermotolerance, wild-type and transformants were grown in Petri dishes, heat-stressed at 52$^{\circ}C$ for 45 min, and then incubated in normal growth condition. When heat-stressed wild-type plantlets were incubated at $25^{\circ}C$, leaf color gradually became white and all trio plantlets finally died within a week. As for the transformants, however, more than 70% of them remained green and survived under the conditions in which all the wild-type plants were dying. It was also found that the levels of NtHSP21 were correlated with the degree of thermotolerance. These results suggest that the NtHSP21 protein in transformants is responsible for the increase in thermotolerance.

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Restoration of Fertility by Suppression of Male Sterility- Induced Gene Using an Antisense Construct (웅성불임 유전자의 발현억제를 이용한 임성회복)

  • Park, Young-Doo;Park, Beom-Seok;Kim, HyunUk;Jin, Yong-Moon
    • Horticultural Science & Technology
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    • v.17 no.4
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    • pp.473-475
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    • 1999
  • This study was carried out to restore the fertility by suppression of male sterility-induced gene using an antisense construct. Tobacco (cv. Petit Havana SR1) was transformed with the binary vector containing a GBAN215-6 promoter, an antisense diphtheria toxin (DTx-A) gene (pKDA215b) and a hygromycin resistant gene. Seventy-six confirmed transgenic plants regenerated from leaf disks were designated as the $R_0$ generation and selfed to produce the $R_1$ generation. From the inheritance study, five $R_1$ lines with multiple copies of the antisense construct were selected and selfed to identify homozygosity for the antisense construct. In order to restore fertility and finally to select restore lines, five $R_2$ lines with multiple copies of the antisense construct were crossed with male sterile plants. From these crosses, three different phenotypes have been observed: completely restored, partially restored, and not restored pollens, and otherwise tobacco plants were phenotypically same as normal plants. These plants were scored for the degree of restoration and selected for further study.

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p-Fluorophenylalanine Resistant Cell Line Selection and Enzyme Activity from Diploid and Hapliod calli of Nicotiana tabacum cv. BY4 (담배 (Nicotiana tabacum cv. BY4)의 캘러스로부터 p-Fluorophenylalanine 저항성 캘러스 선발 및 효소활성도 측정)

  • 오승철;소웅영;조덕이;오승용;양덕춘
    • Korean Journal of Plant Tissue Culture
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    • v.28 no.2
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    • pp.69-74
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    • 2001
  • Calli were induced on MS medium supplemented with 0.5 mg/L 2,4-D by using the leaf explants of haploid which were derived from the diploid and haploid of Nicotiana tabacum cv BY4. These calli were subcultured on MS medium with the combination of 2.0 mg/L 2,4-D, 1.0 mg/L kinetin and 0.1 mg/L BAP. Cell propagation of diploid plants were good in a combination of 2.0 mg/L 2,4-D, 0.1mg/L BAP in vitro conditions, suspension cultures were conducted in equal condition. Homogenized suspension cultured cells were smeared 2.0 mL each on MS medium with 0~100 $\mu$M PFP, to select the resistant colony to PFP, and were examined after 10d, 20d and 30d. Measurment of fresh weight of cells after 30d of culture shows that with more concentration of PFP in medium the fresh weight of the cells decreased. In case of diploid, selected callus was the highest in vitro treated with 5 $\mu$M PFP. It was higher than control until 100 $\mu$M PFP. The active degree of catalase was the highest in vitro with 5 $\mu$M PFP but the lowest in vitro with 10 $\mu$M PFP on the other hand, in case of haploid plant, the active degree of peroxidase and catalase was the highest in vitro treated with 50 $\mu$M PFP. It's sure that enzyme active degree of between diploid and haploid had big differences.

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