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Cyclic Electron Flow around Photosystem I Promotes ATP Synthesis Possibly Helping the Rapid Repair of Photodamaged Photosystem II at Low Light

机译:围绕光系统I的循环电子流促进ATP合成,可能有助于在弱光下快速修复光损坏的光系统II。

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In higher plants, moderate photoinhibition of photosystem II (PSII) leads to a stimulation of cyclic electron flow (CEF) at low light, which is accompanied by an increase in the P700 oxidation ratio. However, the specific role of CEF stimulation at low light is not well known. Furthermore, the mechanism underlying this increase in P700 oxidation ratio at low light is unclear. To address these questions, intact leaves of the shade-adapted plant Panax notoginseng were treated at 2258 μmol photons m~(-2)s~(-1)for 30 min to induce PSII photoinhibition. Before and after this high-light treatment, PSI and PSII activity, the energy quenching in PSII, the redox state of PSI and proton motive force ( pmf ) at a low light of 54 μmol photons m~(-2)s~(-1)were determined at the steady state. After high-light treatment, electron flow through PSII (ETRII) significantly decreased but CEF was remarkably stimulated. The P700 oxidation ratio significantly increased but non-photochemical quenching changed negligibly. Concomitantly, the total pmf decreased significantly and the proton gradient (ΔpH) across the thylakoid membrane remained stable. Furthermore, the P700 oxidation ratio was negatively correlated with the value of ETRII. These results suggest that upon PSII photoinhibition, CEF is stimulated to increase the ATP synthesis, facilitating the rapid repair of photodamaged PSII. The increase in P700 oxidation ratio at low light cannot be explained by the change in pmf , but is primarily controlled by electron transfer from PSII.
机译:在高等植物中,对光系统II(PSII)的适度光抑制导致在弱光下刺激循环电子流(CEF),并伴随着P700氧化率的增加。然而,在弱光下CEF刺激的具体作用尚不清楚。此外,尚不清楚这种在低光下增加P700氧化率的机理。为了解决这些问题,在2258μmol光子m〜(-2)s〜(-1)下,将适应阴凉的植物人参的完整叶片处理30分钟以诱导PSII光抑制。在54μmol光子m〜(-2)s〜(-)的弱光下,高强度处理前后,PSI和PSII活性,PSII中的能量猝灭,PSI的氧化还原状态和质子动力(pmf)。 1)确定为稳定状态。经过高光处理后,流经PSII(ETRII)的电子明显减少,但CEF受到明显刺激。 P700的氧化率显着增加,但非光化学猝灭的变化可忽略不计。同时,总pmf显着下降,整个类囊体膜的质子梯度(ΔpH)保持稳定。此外,P700的氧化率与ETRII值呈负相关。这些结果表明,在PSII光抑制后,CEF被刺激以增加ATP的合成,从而促进光损伤PSII的快速修复。 P700氧化率在弱光下的增加不能用pmf的变化来解释,但主要受PSII的电子转移控制。

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