首页> 外文OA文献 >Functional and Structural Organization of Chlorophyll in the Developing Photosynthetic Membranes of Euglena gracilis Z: II. CHARACTERISTICS OF THE LATE FORMATION OF ACTIVE PHOTOSYSTEM II REACTION CENTERS DURING FIRST STAGES OF GREENING 1
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Functional and Structural Organization of Chlorophyll in the Developing Photosynthetic Membranes of Euglena gracilis Z: II. CHARACTERISTICS OF THE LATE FORMATION OF ACTIVE PHOTOSYSTEM II REACTION CENTERS DURING FIRST STAGES OF GREENING 1

机译:叶绿藻的光合膜发育中叶绿素的功能和结构组织第一阶段绿化过程中活性光系统Ⅱ反应中心后期形成的特征1

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摘要

During light-induced greening of dark-grown, nondividing Euglena gracilis Z, there is a delay of about 10 hours in the formation of active photosystem II (PSII) reaction centers compared to chlorophyll synthesis. Experiments with greening under different light intensities rule out the possibility that this delay results from a late induction of active PSII reaction center formation when a definite amount of chlorophyll is attained in the early greened cells. Experiments on greening after preillumination show that this delay does not originate in a long, light-induced formation of specific synthesizing machinery for reaction center components. Experiments with greening in the presence of streptomycin show that, when this inhibitor of protein synthesis by chloroplastic ribosomes is added to dark-grown, preilluminated cells or to cells already greened for 24 hours, the formation of active PSII reaction centers is inhibited after a time which depends on the light intensity used for greening. Under very low light intensity (150 lux), the addition of streptomycin to 24-hour greened cells does not prevent further development of functional chloroplasts. These observations lead to the conclusion that streptomycin-insensitive chloro-plast development occurs due to syntheses of cytoplasmic origin and of light-induced pools of components synthesized early by chloroplastic ribo-somes. Conformational changes requiring time may allow the insertion of components necessary for the reorganization of PSII reaction centers in the developing thylakoid after synthesis. This hypothesis accounts for the observed delay in PSII reaction center formation compared to chlorophyll synthesis.
机译:与叶绿素合成相比,在黑暗诱导的,不分裂的裸眼细眼虫Euglena Z的光诱导绿化过程中,活性光系统II(PSII)反应中心的形成延迟了大约10个小时。在不同的光强度下进行绿化的实验排除了这种延迟的可能性,这种延迟是由于在早期绿化的细胞中获得一定量的叶绿素时,对后期诱导的主动PSII反应中心形成的诱导。预照明后的绿化实验表明,这种延迟并非源于长时间的,光诱导的反应中心组件专用合成机的形成。在链霉素存在下进行绿化的实验表明,将这种由叶绿体核糖体合成的蛋白质的抑制剂添加到黑暗生长的,预照亮的细胞或已经绿化24小时的细胞中,经过一段时间后,会抑制活性PSII反应中心的形成。这取决于用于绿化的光强度。在非常低的光强度(150 lux)下,向24小时绿化的细胞中添加链霉素不会阻止功能性叶绿体的进一步发育。这些观察结果得出结论:由于叶绿体核糖体早期合成的细胞质起源和光诱导的成分池的合成,发生了链霉素不敏感的叶绿体发展。需要时间的构象变化可允许合成后在发育中的类囊体中插入PSII反应中心重组所需的组分。该假设解释了与叶绿素合成相比,PSII反应中心形成的观察到的延迟。

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