• Title/Summary/Keyword: 광계 II

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Effects of iso-Butanol on Photosynthetic Electron Transport Activity in Isolated Spinach Chloroplasts (시금치(Spinacia oleracea L.) 엽록체의 광합성 전자전달 활성에 미치는 iso-Butanol의 영향)

  • 박강은
    • Journal of Plant Biology
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    • v.35 no.3
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    • pp.247-252
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    • 1992
  • The effect of iso-butanol on the electron transport rate of PS I and PS II was investigated in isolated spinach chloroplasts. In photosystem I, the rate of electron transport increased in the presence of 1 to 4% of isobutanol but decreased in 5 to 9% of iso-butanol. But in photosystem II, the rate of electron transport decreased when treated with 0.2 to 1% of iso-butanol. The inhibitory effect of isomers of butanol on PS II electron transport rate increased in the order of 2-butanol, tert-butanol, iso-butanol and I-butanol. This means that PS II activity was affected according to the arrangement of carbon atoms in butanol. The inhibitory effect of iso-butanol reduced when DPC was added in the solution. This means that iso-butanol affects PS II reduction side of thylakoid membrane primarily. The inhibitory effect of iso-butanol was reduced when $Mn^{2+},\;C^{2+}$ or BSA were added in the solution. PS II activity was restored when 1% iso-butanol treated chloroplast solution was diluted to twentyfold or when $Mn^{2+},\;C^{2+}$ or BSA was added to the diluted solution. However, the SDS-PAGE banding pattern of thylakoid membrane proteins was similar even in 2% iso-butanol treated chloroplasts and the control ones. Only in 5% iso-butanol treated chloroplasts these bands were very weak. These observations suggest that low concentrations of iso-butanol releases manganese and calcium ions from chloroplasts and inhibits the electron transport system. This inhibitory effect can be reversible in low concenterations but in high concentrations the inhibitory effect of iso-butanol become irreversible.rsible.

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시금치 엽록체의 광합성 전자전달 활성에 미치는 $Cd^{2+}$의 저해 효과

  • 정화숙
    • Journal of Plant Biology
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    • v.37 no.2
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    • pp.231-236
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    • 1994
  • The effect of $Cd^{2+}$ on the electron transport rate of PSI and PSII was investigated in isolated spinach chloroplasts. In photosystem II, the rate of electron transport was decreased as the concentration of $Cd^{2+}$ was increased from 1 to $100\;\mu\textrm{M}$. The inhibitory effect of $Cd^{2+}$ was reduced when diphenylcarbazide was added to the reaction medium, indicating that $Cd^{2+}$ affects primarily psn oxygen evolving complexes of thylakoid membrane. The inhibitory effect of $Cd^{2+}$ was reduced when $Mn^{2+}\;and\;Ca^{2+}$ were added to the reaction medium, but the inhibitory effect was not fully relieved. Although the activity of psn was decreased significantly by the treatment of $50\;\mu\textrm{M}\;Cd^{2+}$, Fv/Fm was decreased slightly. However, the treatment of $100\;\mu\textrm{M}\;Cd^{2+}$ resulted in the marked decrease of Fv/Fm. In photosystem I, the rate of electron transport decreased as the concentration of $Cd^{2+}$ was increased from 0.2 to 3.2 mM. The inhibitory effect of $Cd^{2+}$ was decreased when the chloroplast treated with $Cd^{2+}$ was washed by centrifugation.gation.

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Effects of Ozone on Photosynithetic Activity in Chloroplast of Barley (Hordeum vulgare L.) (오존이 보리(Hordeum vulgare L.) 엽록체의 광합성 활성에 미치는 영향)

  • 정화숙
    • Journal of Plant Biology
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    • v.38 no.4
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    • pp.399-407
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    • 1995
  • The effects of 0.5 and 1.0 ppm of ozone on the developing chloroplast of barley (Hordeum vulgare L) seedling during greening were investigated by PSI and II activities, chlorophyll fluorescence, and the contents of chlorophyll. Etiolated barley seedling was treated 0.5 and 1.0 ppm ozone for the first 4 h during greening. In 24 h greening experiment, the contents of chlorophyll were decreased by increasing ozone concentration from 0.5 ppm to 1.0 ppm. In 24 h greening experiment, Fo, Fv, Fm and qE were greatly decreased as the concentration of ozone was increased, but those were not considerably decreased in 48 h greening experiment. In another experiment, the developing barley seedling was treated with 0.5 and 1.0 ppm ozone for the last 4 h during greening period, which was 24 h or 48 h. In both experiments the PS II activity was decreased as the concentration of ozone was increased, but not in PS I activity. Fv, Fm and Fv/Fo were also decreased as the concentration of ozone was increased. qP and qR were strikingly decreased as the concentration of ozone was increased in both experiments.iments.

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Evaluation of Street Tree Rootage by Transplanting Methods - Photochemical Response Analysis of Different Cultivation for Sorbus alnifolia - (가로수의 이식방법에 따른 수목 활착 평가 - 재배방법별 팥배나무의 광화학적 반응 해석 -)

  • Yoo, Sung Young;Park, So Hyun;Park, Chung In;Kim, Tae Jin
    • Journal of the Korean Institute of Landscape Architecture
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    • v.43 no.1
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    • pp.132-138
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    • 2015
  • Trees, cultivated in containers, are appropriate in soil deformation such as road sites with cutting and filling. This study tested the effectiveness of trees produced in containers for early rootage in street tree transplantation. For the study, Korean Mountain Ashes(Sorbus alnifolia) were used for experimental groups. The groups were categorized into three categories: trees cultivated in containers with mulching treatment(group A), trees cultivated outdoors with mulching treatment (group B), and trees cultivated in containers with weeding treatment(group C). Each group consisted of ten trees of the same size and transplanted to the experimental site. In order to compare each group's rootage, the study was carried out with the chlorophyll fluorescence method by the analysis of photochemical reaction. As a result of the study, group B had the lowest the maximum fluorescence amount(P). The amount of fluorescence increased by OJ transition of the process, and appeared to reduce the photosystem II electron transport efficiency. In photosystem II, electron transfer energy flux through photosystem I(RE1o/RC, RE1o/CS) was also reduced by more than 20% in group B. These results may imply that transplantation of container-cultivated trees with mulching treatment provides the most rapid rootage among the groups. The weeding treatment is also more effective than mulching treatment for rapid rootage of street trees.

The Effect of Plant Hormones and Light Quality on the Formation of Chlorophyll-Protein Complexes in Maize Seedlings (옥수수 유식물의 엽록소-단백질 복합체 형성에 미치는 식물호르몬 및 광선의 효과)

  • Dong-Hee Lee;Young-Sang Kim
    • Journal of Environmental Science International
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    • v.2 no.4
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    • pp.279-289
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    • 1993
  • Light qualities and three kinds of plant hormones, NAA, GA3 and BA were treated on maize seedlings to investigate the effect on formation of the chlorophyll-protein complexes. Each three kinds of plant hormones accelerated the chlorophyll proteins formation, particularly LHCP-1 and LHCP-3, but two kinds of hormonal combinations didn't promote these proteins accumulation under sun light condition. The formation of chlorophyll proteins of LHCP-1, CPA and LHCP-3 associated with PSII was promoted under red light compared to sun light, on the contrary the formation of chlorophyll proteins was not affected by white light. Plant hormones under red light induced chlorophyll proteins formation associated with PSII at early state of chloroplast development and two kinds of hormonal combinations under red light were very effective in accumulation of chlorophyll proteins of PSII in contrast to sun light. The results obtained suggest that light may play an important role compared to plant hormones in the formation of chlorophyll proteins.

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Photosynthetic Characteristics of Intact Cells and Thylakoid Membranes of Synechococcus PCC7002 with Polyvinyalcohol-Immobilization (Synechococcus PCC7002의 세포 및 틸라코이드 막의 Polyvinylalcohol 고정화에 의한 광합성 특성)

  • 윤지은;전현식
    • KSBB Journal
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    • v.8 no.2
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    • pp.185-191
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    • 1993
  • Highly stable $O_2$-evolving cells and thylakoid membranes have been obtained from the cyanobacterium, Synechococcus PCC7002, by immobilization with polyvinylalcohol(PVA). The absorption peak showed the blue-shift of about 3 nm after immobilization of intact cells and thylakoid membranes as well as isolation of thylakoid membranes. Photosynthetic electron transport activities, especially PS II activity showed greater stability in the PVA-immobilized cells and thylakoid membranes when stored at $4^{\circ}C$ than in those at $25^{\circ}C$. When the cells were threated at higher temperature, the level of Fo and Fv increased. After imobilization, however, Fo showed no change. This suggests that the immobilization can protect against the damages of PS II complex, especially a water-spiliting system, by heat treatment.

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Protective Effects of Phosphate and ATP Pretreatment on Pb-Inhibiting Photosystem II Activity (연(Pb)에 의한 광계 II 활성억제에 미치는 인산 및 ATP 전처리의 보호효과)

  • 성민웅
    • Journal of Plant Biology
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    • v.25 no.1
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    • pp.21-36
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    • 1982
  • The activity of photosystem II in isolated chloroplast form the leaves of Sedum sarmentosum was measured. The photoreduction rate of DCPIP by photosystem II showed the circadian rhythm with a peak at near midday sample for a continuing fine day and at near afternoon between nidday and sunset sample for a continuing cloudy day in summer. The optimum light intensity of photoreduction by photosystem II in the chloroplast preparation was about 5~9$\times$$10^4$ lux. The saturated light intensity was over 9$\times$$10^1$lux. Photosystem II activity was inhibited by even the lowest concentration of lead. When Pi and ATP of the same concentration as Pb were added to the reaction mixture containing Tris buffer lacking of Pi prior to Pb incubation, photosystem II activity was protected from Pb-inhibiting effect by the pretreament of Pi and ATP. It was assumed that Pb inhibiiton was probably due to one, P-depriving by the precipitates of $Pb_3$ $($Pb_4$)_2$ in the reaction mixture and the other, partially Pb-combing with Pi groups of the active site of photosystem II.

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Studies on Inactivation and Reactivation of Isolated Photosystem II Complexes in Spinach (시금치에서 분리한 광계 2 복합체의 불활성화와 재활성화에 대한 연구)

  • 전현식
    • Journal of Plant Biology
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    • v.33 no.4
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    • pp.277-283
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    • 1990
  • Inactivation and reactivation of photosynthetic oxygen evolving complex were studied with isolated spinach (Spinacia oleraceda. L.) photosystem II particles by the activity of oxygen evolution and chlorophyll fluorescence. When the particles were treated with Tris and urea, the oxygen evolution was inactivated and three polypeptides having molecular weights of 33 kDa, 24 kDa and 18 kDa were simultaneously released. But in NaCl-treated particles, two polypeptides of 24 kDa and 18 kDa were removed from PS II particles. The oxygen evolution activities of Tris and urea-treated particles were not restored by adding cation ions (Mg2+, Mn2+ and Ca2+), but the NaCl-treated particles were restored by exogenously added Ca2+. The removal of these extrinsic polypeptides, especially 33 kDa, markedly showed the decrease of the variable fluorescence (Fv). These results are likely to be due to dissipate thermal energy by antenna of photosystem II complexes.

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Cloning of CAB cDNA encoding chlorophyll a/b binding protein of photosystem II in Korean ginseng and Use in Plant (고려인삼 광계 II Chlorophyll a/b binding Protein 유전자(CAB)의 cloning 및 식물에의 활용연구)

  • 김갑식;이기원;이종철;여운형;채순용;박은경
    • Journal of the Korean Society of Tobacco Science
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    • v.21 no.2
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    • pp.152-159
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    • 1999
  • A CAB cDNA clone(pKGCAB) encoding the light harvesting chlorophyll a/b binding protein of the semi-shade plant, Korean ginseng(Panax ginseng C. A. Meyer) was isolated by the one-way path random sequencing of ginseng cDNA library clones and transgenic tobacco plants(Nicotiana tabacum NC82) were produced by the transformation of this ginseng CAB gene in use of Agrobacterium tumefaciens LBA4404. The CAB gene showed type 1 structure of LHCP-II, 84% similarity in nucleotide sequence and 92% in amino acid sequence to that of Nicotiana tabacum CAB40, respectively. Seed germination and initial growth of the transgenic tobacco plants transformed with the cDNA fragment were accelerated under low light intensity compared with those of normal tobacco plant, that may result from the higher light sensitivity of the transgenic plants than that of the normal.

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