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Modulation of photosynthetic electron transport in the absence of terminal electron acceptors: Characterization of the rbcL deletion mutant of tobacco
Authors:Yagut Allahverdiyeva  Pirkko Mäenpää  Eva-Mari Aro
Institution:a Department of Biology, Plant Physiology and Molecular Biology, Turku University, FIN-20014 Turku, Finland
b Department of Molecular Biomimetics, Uppsala University, Villavägen 6, S-752 36 Uppsala, Sweden
c Plant Biology Institute, Biological Research Center, H-6701 Szeged, PO-BOX 521 Hungary
Abstract:Tobacco rbcL deletion mutant, which lacks the key enzyme Rubisco for photosynthetic carbon assimilation, was characterized with respect to thylakoid functional properties and protein composition. The ΔrbcL plants showed an enhanced capacity for dissipation of light energy by non-photochemical quenching which was accompanied by low photochemical quenching and low overall photosynthetic electron transport rate. Flash-induced fluorescence relaxation and thermoluminescence measurements revealed a slow electron transfer and decreased redox gap between QA and QB, whereas the donor side function of the Photosystem II (PSII) complex was not affected. The 77 K fluorescence emission spectrum of ΔrbcL plant thylakoids implied a presence of free light harvesting complexes. Mutant plants also had a low amount of photooxidisible P700 and an increased ratio of PSII to Photosystem I (PSI). On the other hand, an elevated level of plastid terminal oxidase and the lack of F0 ‘dark rise’ in fluorescence measurements suggest an enhanced plastid terminal oxidase-mediated electron flow to O2 in ΔrbcL thylakoids. Modified electron transfer routes together with flexible dissipation of excitation energy through PSII probably have a crucial role in protection of PSI from irreversible protein damage in the ΔrbcL mutant under growth conditions. This protective capacity was rapidly exceeded in ΔrbcL mutant when the light level was elevated resulting in severe degradation of PSI complexes.
Keywords:Chl  chlorophyll  CP29  CP26  minor light-harvesting complex proteins of PSII  Cyt  cytochrome  DAB  3  3&prime  -diaminobenzidine  DCMU  3-(3  4-dichlorophenyl)-1  1-dimethylurea  DMBQ  2  6-dimethyl-p-benzoquinone  EPR  electron paramagnetic resonance  ETR  electron transport rate  FNR  ferredoxin-NADP oxidoreductase  LHCII  major light-harvesting complex of PSII  NDH-1  proton-pumping NAD(P)H dehydrogenase 1 complex  Ndh-I  subunit of NDH-1 complex  NPQ  non-photochemical quenching  PQ  plastoquinone  PSI  Photosystem I  PSII  Photosystem II  P680  primary electron donor of PSII  P700  primary electron donor of PSI  QA and QB  the primary and secondary quinone acceptors in PSII  PTOX  plastid terminal oxidase  ROS  reactive oxygen species  Rubisco  ribulose-1  5-biphosphate carboxylase/oxygenase  TL  thermoluminescence  WT  wild type  YD  accessory tyrosine electron donor to P680  tyrosine 160 on the D2
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