Photorespiration provides the chance of cyclic electron flow to operate for the redox-regulation of P700 in photosynthetic electron transport system of sunflower leaves

被引:0
作者
Daisuke Takagi
Masaki Hashiguchi
Takehiro Sejima
Amane Makino
Chikahiro Miyake
机构
[1] Kobe University,Department of Biological and Environmental Science, Faculty of Agriculture, Graduate School of Agricultural Science
[2] Tohoku University,Department of Applied Plant Science, Graduate School of Agricultural Science
来源
Photosynthesis Research | 2016年 / 129卷
关键词
Cyclic electron flow; Electron sink; Mehler-ascorbate peroxidase (MAP)-pathway; Oxygen; Photosystem I; Photorespiration; P700;
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摘要
To elucidate the molecular mechanism to oxidize the reaction center chlorophyll, P700, in PSI, we researched the effects of partial pressure of O2 (pO2) on photosynthetic characteristic parameters in sunflower (Helianthus annuus L.) leaves. Under low CO2 conditions, the oxidation of P700 was stimulated; however the decrease in pO2 suppressed its oxidation. Electron fluxes in PSII [Y(II)] and PSI [Y(I)] showed pO2-dependence at low CO2 conditions. H+-consumption rate, estimated from Y(II) and CO2-fixation/photorespiration rates (JgH+), showed the positive curvature relationship with the dissipation rate of electrochromic shift signal (VH+), which indicates H+-efflux rate from lumen to stroma in chloroplasts. Therefore, these electron fluxes contained, besides CO2-fixation/photorespiration-dependent electron fluxes, non-H+-consumption electron fluxes including Mehler-ascorbate peroxidase (MAP)-pathway. Y(I) that was larger than Y(II) surely implies the functioning of cyclic electron flow (CEF). Both MAP-pathway and CEF were suppressed at lower pO2, with plastoquinone-pool reduced. That is, photorespiration prepares the redox-poise of photosynthetic electron transport system for CEF activity as an electron sink. Excess Y(II), [ΔY(II)] giving the curvature relationship with VH+, and excess Y(I) [ΔCEF] giving the difference between Y(I) and Y(II) were used as an indicator of MAP-pathway and CEF activity, respectively. Although ΔY(II) was negligible and did not show positive relationship to the oxidation-state of P700, ΔCEF showed positive linear relationship to the oxidation-state of P700. These facts indicate that CEF cooperatively with photorespiration regulates the redox-state of P700 to suppress the over-reduction in PSI under environmental stress conditions.
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页码:279 / 290
页数:11
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共 256 条
[1]  
Allen JF(2002)Photosynthesis of ATP—electrons, proton pumps, rotors, and poise Cell 110 273-276
[2]  
Allen JF(2003)Cyclic, pseudocyclic and noncyclic photophosphorylation: new links in the chain Trends Plant Sci 8 15-19
[3]  
Arnon DI(1959)Conversion of light into chemical energy in photosynthesis Nature 184 10-21
[4]  
Asada K(1999)The water-water cycle in chloroplasts: scavenging of active oxygens and dissipation of excess photons Annu Rev Plant Biol 50 601-639
[5]  
Asada K(1974)Univalent reduction of molecular oxygen by spinach chloroplasts on illumination J Biol Chem 249 2175-2181
[6]  
Kiso K(2005)Regulating the proton budget of higher plant photosynthesis Proc Natl Acad Sci USA 102 9709-9713
[7]  
Yoshikawa K(2000)Electron flow to oxygen in higher plants and algae: rates and control of direct photoreduction (Mehler reaction) and rubisco oxygenase Philos Trans R Soc B 355 1433-1446
[8]  
Avenson TJ(2008)Chlorophyll fluorescence: a probe of photosynthesis in vivo Annu Rev Plant Biol 59 89-113
[9]  
Cruz JA(2007)Determining the limitations and regulation of photosynthetic energy transduction in leaves Plant Cell Environ 30 1107-1125
[10]  
Kanazawa A(1995)Does photorespiration protect the photosynthetic apparatus in French bean leaves from photoinhibition during drought stress? Planta 196 450-457