The evolutionary conserved iron-sulfur protein TCR controls P700 oxidation in photosystem I
identifier:oai:t2r2.star.titech.ac.jp ...
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Improving tolerance to fluctuating light through adaptive laboratory evolution in the cyanobacterium Synechocystis. [PDF]
Figueroa-Gonzalez T +7 more
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Kinetic Determination of Cytochrome <i>b<sub>6</sub>f</i> Activity In Vitro. [PDF]
Milrad Y, Wegemann D, Hippler M.
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Oxidation of P700 Induces Alternative Electron Flow in Photosystem I in Wheat Leaves
Oxygen (O2)-evolving photosynthetic organisms oxidize the reaction center chlorophyll, P700, in photosystem I (PSI) to suppress the production of reactive oxygen species. The oxidation of P700 is accompanied by alternative electron flow in PSI (AEF-I), which is not required for photosynthetic linear electron flow (LEF).
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Understanding mechanistic responses underlying diurnal photoprotection and photosynthetic plasticity among cacao genotypes under natural amazonian field conditions. [PDF]
Suárez JC +2 more
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Interrelated Roles of Chloride and Bicarbonate in Regulating Electron Transport Across Photosystem II in <i>Limnospira maxima</i>. [PDF]
Castillo L +6 more
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The amino terminus of PetD is essential for cytochrome b<sub>6</sub> f function and the negative feedback control of STT7 kinase. [PDF]
Zaeem A +8 more
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Cyclic electron flow around photosystem I provides energy production and photoprotection in C4 plants. [PDF]
Nakamura A +5 more
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Humic Acid Modulates Photosynthetic Responses to PEG-Induced Drought in <i>Ocimum basilicum</i> L. [PDF]
Stefanov MA +4 more
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Photophysical model of primary charge separation in green algal photosystem I based on combined analysis of time-resolved absorption and fluorescence spectra. [PDF]
Giera W, Gibasiewicz K.
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