• 제목/요약/키워드: PSII

검색결과 143건 처리시간 0.035초

배추 엽록체의 광계II 활성에 미치는 구리이온의 영향 (Effect of Cupric Ion on the PSII Activity in Isolated Chinese Cabbage Chloroplasts)

  • 박인호
    • Journal of Plant Biology
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    • 제30권3호
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    • pp.181-187
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    • 1987
  • Copper inhibited PSII-mediated O2 evolution (H2OlongrightarrowDCIP, H2OlongrightarrowSiMo) but not PSImediated O2 uptake(DCIP. Asc.longrightarrowMV) in isolated Chinese cabbage chloroplasts. Copper toxicity on PSII-mediated O2 evolution was higher at alkaline condition than at acidic condition and was inhanced by light illumination after copper treatment. The increased toxicity by light illumination was not recovered by subsequent dark treatment. The inhibitory effect of copper on H2OlongrightarrowDCIP reaction was higher than that on H2OlongrightarrowSiMo reaction. This result suggests that there may be another inhibitory site of copper on PSII other than water oxidizing side of PSII.

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광 스트레스에 대한 고추 잎의 광합성 반응과 광 보호 메커니즘 (Photosynthetic Responses and Photoprotection in Korean Hot Pepper (Capsicum annuum L.) against High Light Stress)

  • 이혜연;박연일;김창기;홍영남
    • 한국환경농학회지
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    • 제25권2호
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    • pp.109-117
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    • 2006
  • Photoinhibition and photoprotection of PSII in the leaves of hot pepper (Capsicum annuum L.) grown in Hoagland solution and Tap water were compared. Though changes in the rates of $O_2$ evolution as a function of photon fluence rate (PFR) were comparable, the rates of respiration in the dark was 3 times higher in the Hoagland solution grown leaves than in the Tap-water grown ones. Compared to Hoagland solution grown plane, PSIIs of Tap water grown pepper leaves were more susceptible to photoinhibitory light treatment. In order to inactivate functional PSII to the same extents, Hoagland solution grown plants required almost 2-fold high light $(1600{\mu}molm^{-2}s^-)$ treatment than those of Tap water $(900{\mu}molm^{-2}s^-)$. Interestingly, the remaining fraction of PSII in Hoagland grown pepper was able to survive under prolonged illumination in the presence of lincomycin, which probably means that the growth condition of plant seemed to have an effect on the recovery of PSII from light stress. When PSII was severly photoinactivated at a chilling temperature, recovery was observed only if the residual functional PSII were not inhibited with DCMU, Nigericin and MV during recovery. In conclusion, PSIIs grown in the Hoagland solution was more resistant to excess light than in the Tap water grown one and the recovery of PSII from photodamage was more efficient in Hoagland grown pepper leaves than Tap water grown one, which means that the increased dark respiration may play a important role in the protection of PSII from photoinhibition by helping repair photosynthetic proteins (in particular, the D1 protein of PSII) degraded by photoinhibition.

Mobilization of Photosystem II-Light Harvesting Complex II Supercomplexes during High Light Illumination and State Transitions

  • Nath, Krishna;Elizabeth, John;Poudyal, Roshan Sharma;Ko, Su Yeon;Lim, Woon Ki;Lee, Choon-Hwan
    • Rapid Communication in Photoscience
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    • 제2권1호
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    • pp.18-23
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    • 2013
  • The photosystem II (PSII) light harvesting complex (LHC) consists of a variety of pigment protein complexes which are involved in structural organization and regulation of photosynthetic unit. These LHC proteins encoded by a group of Lhcb genes are essential for the structural integrity of PSII supercomplex, the channeling the excitation energy to the reaction center of PSII and its redistribution to photosystem I by state transitions. Numerous studies with the help of recent technological advancements have enabled a significant progress in our understanding on the structure of PSII-LHCII supercomplexes and their mobilization under various light conditions. Here, we present a mini-review on the latest concepts and models depicting the structure of PSII-LHCII supercomplexes and the role of Lhcb proteins in their supra-molecular organization. Also we will review on the current understandings and remaining problems involved in the mobilization of the supercomplexes during state transitions and during high light illumination for controlling light energy distribution between the two photosystems.

Decrease of Photochemical Efficiency Induced by Methyl Viologen in Rice(Oryza sativa L.) Leaves is Partly due to the Down-Regulation of PSII

  • Kim, Jin-Hong;Lee, Choon-Hwan
    • Journal of Photoscience
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    • 제9권3호
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    • pp.65-70
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    • 2002
  • In the rice leaves treated with methyl viologen (MV), the photochemical efficiency of PSII (or $F_{v/}$F $m_{m}$) was significantly decreased, and significant portion of the photoinactivation process was reversible during the dark-recovery. The dark-reactivation process was relatively slow, reaching its plateau after 2-2.5 h of dark incubation. The damaged portion of functional PSII was 13%, based on the value of I/ $F_{o}$- I/ $F_{m}$ after this dark-recovery period. The reversible photoinactivation process of PSII function in the MV-treated leaves consisted of a xanthophyll cycle-dependent development of NPQ and a xanthophyll cycle-independent process. The latter process was reversible in the presence of nigericin. As well as the increase in the values of Chl fluorescence parameters, the epoxidation process during the dark-recovery after the MV-induced photooxidation was very slow. These results suggest that the photooxidative effect of MV is partly protected by the down-regulation of PSII before inducing physical damages in core proteins of PSII.I.I.I.I.

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콩의 삼투 저항성 검정에 있어서 Non-photochemical quenching의 적용 (Application of Non-photochemical Quenching on Screening of Osmotic Tolerance in Soybean Plants)

  • 박세준;김현희;고태석;심명룡;유성녕;박소현;김태경;엄기철;홍선희;김태완
    • 한국토양비료학회지
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    • 제43권3호
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    • pp.390-399
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    • 2010
  • 한발과 염 스트레스에 대한 콩의 저항성 검정에 있어서 Non-photochemical quenching (NPQ)을 적용하기 위하여, 저항성 콩 (신팔달콩 2호)와 대조구 콩 (태광콩)을 이용하여 제한적 관수 (50 m/pot/day) 와 염 (200 mmol NaCl) 처리를 한 후, 엽록소 형광반응의 변수, maximum efficiencies of photosystem II photochemistry ($F_v/F_m$), efficiencies of photosystem II photochemistry (${\Phi}_{PSII}$), NPQ와 $CO_2$ 동화율 ($P_N$) 을 측정하였다. 콩 두 품종의 엽 수분포텐셜은 한발처리에서 -0.2 MPa에서 -0.8 MPa로, 염처리에서는 -0.7 MPa에서 -1.7 MPa로 감소하였다. 염처리에서 엽 수분함량의 감소는 신팔달콩 2호에서 적었다. 두 품종 모두 엽의 수분포텐셜이 감소함에 따라 $F_v/F_m$은 변화가 없었으며, ${\Phi}_{PSII}$$P_N$는 감소하였다. NPQ의 경우, 신팔달콩 2호은 한발과 염처리에 모두에서 반응이 나타난 반면, 태광콩에서는 한발처리에서만 나타났다. 두 품종의 모든 처리에서 ${\Phi}_{PSII}$$P_N$간에 정의 상관 관계를 보였으나, $P_N$의 감소에 대한 ${\Phi}_{PSII}$의 감소 정도가 신팔달콩 2호에서 적었다. 또한 삼투처리에 따른 ${\Phi}_{PSII}$의 감소와 NPQ의 증가는 신팔달콩 2호에서만 나타나 ${\Phi}_{PSII}$와 NPQ 간의 부의 관계가 유지된 반면, 태광콩에서는 염처리에서 이들간의 연관성이 없었다. 따라서 본 연구는 삼투 저항성의 검정에 있어서 엽록소 형광반응의 단일변수($F_v/F_m$, ${\Phi}_{PSII}$, 및 NPQ)의 이용보다 ${\Phi}_{PSII}$와 NPQ 의 상호관계 분석이 더 유효한 것을 제시하였다.

플라즈마 이온주입 방법으로 처리된 폴리스티렌의 분자량에 따른 표면 친수성 및 에이징 현상 (Wettability and Aging Effect of Polystyrene Film Treated by PSII according to the Molecular Weight)

  • 김영수;임현의;한승희;이연희;김영상
    • 분석과학
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    • 제15권3호
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    • pp.229-235
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    • 2002
  • 폴리스티렌 시료의 표면을 플라즈마 이온주입(PSII) 기술로 처리하여 친수성을 향상시켰다. 친수성이 향상된 표면은 시간이 지남에 따라 원래 성질인 소수성으로 되돌아가려는 특성 (aging effect)이 있는데 본 연구에서는 각각 분자량이 다른 폴리스티렌 필름을 이용하여 분자량에 따른 에이징 효과를 살펴보았다. 무게평균 분자량이 각각 $M_w$ = 760, 2430, 31600, 115700, 280000, 903600 인 폴리스티렌을 가스종류와 펄스전압 등의 PSII 실험 변수에 따라 표면 친수성 변화를 측정하였고 PSII 처리 후 보관온도를 달리하여 분자량에 따른 에이징 정도를 관찰하였다. 분자량이 큰 폴리스티렌이 시간에 따른 에이징 현상이 적게 일어났으며 펄스전압과 보관온도가 높은 조건에서도 사슬이 긴 폴리스티렌이 에이징이 덜 되었다. 물 접촉각을 측정하여 표면 친수성을 나타내었으며 처리 후 표면 구조 변화를 관찰하기 위하여 SEM과 AFM을 이용하였고, TOF-SIMS와 XPS를 통하여 표면에 생성된 작용기들을 확인하였다.

Influence of the Donor Side of Photosystem II on the Photogeneration of Superoxide Radicals and Chlorophyll a Fluorescence

  • Weng, Jun;Zhang, Suping;Pan, Jingxi;Jinxing, Chen;Xu, Chunhe
    • Journal of Photoscience
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    • 제9권2호
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    • pp.385-387
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    • 2002
  • Direct EPR evidence of the photo-generation of superoxide radicals ( $O_2$$^{-.}$) was obtained by using spin trapping techniques in spinach photosystem II (PSII) membranes. $O_2$$^{-.}$ was detected by following the formation of 5-diethoxyphosphoryl-5-methyl-1 -pyrroline-N-oxide (DEPMPO) superoxide adducts, DEPMPO-OOH. The significant increase of the EPR signal amplitude of DEPMPO-OOH in N$H_2O$H-, CaC $l_2$- and NaCl-treated PSII membranes showed that the oxygen-evolving system has a close relation to the $O_2$$^{-.}$ production. PSII membranes with inactivated donor side could not prevent the $O_2$$^{-.}$ production efficiently. Treatments on PSII donor side also influence the maximum level and the kinetics of Chlorophyll (Chi) a fluorescence. Results suggested that manganese cluster and extrinsic proteins might affect Chi a fluorescence in ways different from that happens at the acceptor side of PSII.SII.SII.

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Photodynamic Action by Endogenous Non-Chlorophyll Sensitizer As a Cause of Photoinhibition

  • Suh, Hwa-Jin;Kim, Chang-Sook;Jin Jung
    • Journal of Photoscience
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    • 제7권3호
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    • pp.87-95
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    • 2000
  • As sunlight not always optimized for every terrestrial plant in terms of light quality, quantity and duration, some plants suffer detrimental effects of sunlight exposure under certain conditions. Photoinhibition of photosynthesis is a typical phenomenon representing harmful light effects, commonly observed in many photosynthetic organisms. It is generally accepted that functional, structural loss of photosystem II complex(PSII) is the primary event of photoinhibition. Accumulating data also suggest that singlet oxygen($^1$O$_2$) is the main toxic species directly involved in it. There are two different views on the specific site and mechanism of $^1$O$_2$ production in the photosynthetic membrane. One of them favors the PSII reaction center, where the primary charge pairs recombination occurs as a prerequisite for the generation of $^1$O$_2$, and the other inclines to photosensitized $^1$O$_2$ formation by a substance located outside PSII. This article describes how we, as the advocators of the latter concept, have arrived at the conclusion that $^1$O$_2$ immediately involved in PSII photodamage is largely generated from the Rieske center of the cytochrome b$_{6}$/f complex and diffuses into PSII, attacking the reaction center subunits.s.

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Disassembly of Chlorophyll-Protein Complexes in Arabidopsis thaliana during Dark-Induced Foliar Senescence

  • Lee, Choon-Hwan
    • Journal of Plant Biology
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    • 제39권4호
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    • pp.301-307
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    • 1996
  • The disassembly of Chl-protein complexes during dark-induced senescence (DIS) was investigated using detached third and fourthleaves of 21$\pm$1 day-old Arabidopsis thaliana. Although Chl content decreased linearly after 1 d, a significant decrease of photochemical effeciency (Fv/Fm) was observed after 2 d. In experiments using native green gel electrophoresis of Chl-protein complexes combined with additional two-dimensional SDS-PAGE analysis, we could observe the degradation of both photosystems after 2 d. Although light-harvesting complex(LHC) for PSI (LHCI) was degraded first in PSI complex, small PSII apoproteins including CP47/CP43 and D1/D2 apoproteins were degraded first in PSII complexes. LHC for PSII (LHCII) trimers were stable until 4 d. The level of LHCII monomers was increased until 3 and decreased thereafter, resulting in the increase of free pigments. These results suggest that the disassembly process of PSI is different from that of PSII.

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