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Control of the Photosynthetic Apparatus of Acetabularia mediterranea by Blue Light 1: Analysis by Light-Saturation Curves

机译:蓝光控制地中海假单胞菌光合装置的1:光饱和曲线分析

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摘要

During growth, Acetabularia mediterranea requires the action of blue light to maintain high rates of photosynthesis. In the present study, blue light-dependent alterations of the photosynthetic apparatus, which can be detected by analysis of light-saturation curves and by measurements of partial reactions of the photosynthetic electron transport chain, are described. Light-saturation curves of photosynthesis in vivo were measured with a new closed oxygen electrode system after culture of Acetabularia in continuous red or blue light. These curves were compared to those of 2,6-dichlorophenol-indophenol reduction by isolated chloroplast membranes. The analysis lead to the following statements: (a) only one reaction limits electron transport rates in vitro (dichlorophenol-indophenol reduction) at all light intensities irrespective of the light quality during growth, and (b) the limiting step is light driven and located in the reaction center of photosystem II. Presumably, this same reaction determines the flow of electrons under low light intensities in vivo in cells from white, blue, and red light. In addition to photosynthesis, the rates of dark respiration changed due to the action of blue light. Concomitantly, the light compensation point of apparent photosynthesis was shifted during monochromatic irradiations.
机译:在生长过程中,地中海假单胞菌需要蓝光的作用才能保持高的光合作用速率。在本研究中,描述了可以通过光饱和度曲线的分析和通过测量光合电子传输链的部分反应来检测的光合作用装置的蓝光依赖变化。在连续红色或蓝色光下培养棘孢菌后,使用新的封闭式氧电极系统测量体内光合作用的光饱和度曲线。将这些曲线与通过分离的叶绿体膜还原2,6-二氯苯酚-吲哚酚的曲线进行比较。该分析得出以下结论:(a)在任何光强度下,只有一个反应限制了体外电子传输速率(二氯苯酚-吲哚酚还原),而与生长过程中的光质无关,并且(b)限制步骤是光驱动和定位的在光系统II的反应中心。据推测,这种相同的反应决定了白光,蓝光和红光在体内低光强度下电子在体内的流动。除了光合作用之外,由于蓝光的作用,暗呼吸的速率也发生了变化。伴随地,在单色照射期间,表观光合作用的光补偿点发生了偏移。

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