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Different roles of cyclic electron flow around photosystem I under sub-saturating and saturating light intensities in tobacco leaves

机译:亚饱和和饱和烟叶中循环电子在光系统I周围流动的不同作用

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摘要

In higher plants, the generation of proton gradient across the thylakoid membrane (ΔpH) through cyclic electron flow (CEF) has mainly two functions: (1) to generate ATP and balance the ATP/NADPH energy budget, and (2) to protect photosystems I and II against photoinhibition. The intensity of light under which plants are grown alters both CEF activity and the ATP/NADPH demand for primary metabolic processes. However, it is unclear how the role of CEF is affected by the level of irradiance that is applied during the growth and measurement periods. We studied the role of CEF at different light intensities in leaves from sun- and shade-grown plants. At 849 μmol photons m-2 s-1, both types of leaves had nearly the same degree of CEF activation. Modeling of the ATP/NADPH demand revealed that, at this light intensity, the contribution of CEF toward supplying ATP was much higher in the sun leaves. Meanwhile, the shade leaves showed higher levels of non-photochemical quenching and the P700 oxidation ratio. Therefore, at 849 μmol photons m-2 s-1, CEF mainly helped in the synthesis of ATP in the sun leaves, but functioned in photoprotection for the shade leaves. When the light intensity increased to 1976 μmol photons m-2 s-1, CEF activation was greatly enhanced in the sun leaves, but its contribution to supplying ATP changed slightly. These results indicate that the main role of CEF is altered flexibly in response to light intensity. In particular, CEF mainly contributes to balancing the ATP/NADPH energy budget under sub-saturating light intensities. When exposed to saturating light intensities, CEF mainly protects photosynthetic apparatus against photoinhibition.
机译:在高等植物中,通过循环电子流(CEF)在类囊体膜(ΔpH)上生成质子梯度主要具有两个功能:(1)生成ATP和平衡ATP / NADPH能量收支,以及(2)保护光系统我和我反对光抑制。植物生长所处的光强度会改变CEF活性和主要代谢过程的ATP / NADPH需求。但是,尚不清楚CEF的作用如何受到生长和测量期间施加的辐照水平的影响。我们研究了CEF在日光和阴凉植物叶片中不同光强度下的作用。在849μmol光子m -2 s -1 时,两种叶片的CEF活化程度几乎相同。对ATP / NADPH需求的模型显示,在这种光强度下,太阳叶中CEF对提供ATP的贡献要高得多。同时,阴影叶片显示出更高水平的非光化学猝灭和P700氧化比。因此,在849μmol光子m -2 s -1 时,CEF主要有助于太阳叶中ATP的合成,但对遮阳叶具有光保护作用。当光强度增加到1976μmol光子m -2 s -1 时,CEF的激活在太阳叶片中大大增强,但其对提供ATP的贡献略有变化。这些结果表明,CEF的主要作用可以根据光强度灵活改变。特别是,CEF主要有助于在亚饱和光强度下平衡ATP / NADPH能量预算。当暴露于饱和光强度时,CEF主要保护光合作用设备免受光抑制。

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