Cytophysiologie de la Photosynthèse, Centre National de la Recherche Scientifique, Gif sur Yvette, France, 91190.
Plant Physiol. 1981 Jan;67(1):54-8. doi: 10.1104/pp.67.1.54.
Greening cells of Euglena were transferred back to darkness at different stages of chloroplast development in the presence or absence of specific inhibitors of protein synthesis. The analysis of chloroplast components showed that: (a) cycloheximide or streptomycin does not significantly inhibit the formation in darkness of active photosystem II (PSII) reaction centers if added after the lag phase for chloroplast development; (b) a limited number of active reaction centers are formed in the dark, sufficient to increase PSII reaction center to chlorophyll ratios to values close to those found in fully greened cells; (c) these dark-formed reaction centers appear to be inserted in already constituted and complete light-harvesting antennae. These results complement previous ones and lead us to propose a model for a sequential formation of PSII photosynthetic units during greening of Euglena, whereby conformational changes requiring time would allow already synthesized components of PSII reaction centers to be inserted or reorganized as active photochemical complexes in association with previously formed light-harvesting antennae.
在存在或不存在蛋白质合成特定抑制剂的情况下,将绿眼虫的绿色细胞在叶绿体发育的不同阶段转移回黑暗中。对叶绿体成分的分析表明:(a) 如果在叶绿体发育的滞后阶段之后加入,环己酰亚胺或链霉素不会显著抑制暗反应中心中活跃的光系统 II (PSII) 的形成;(b) 在黑暗中形成了有限数量的活跃反应中心,足以将 PSII 反应中心到叶绿素的比值增加到接近完全绿色细胞中发现的值;(c) 这些暗形成的反应中心似乎插入已经构成的和完整的光捕获天线中。这些结果补充了以前的结果,并使我们提出了一个在绿眼虫的绿色化过程中 PSII 光合单位的顺序形成的模型,其中需要时间的构象变化将允许已经合成的 PSII 反应中心组件插入或重组为与先前形成的光捕获天线相关的活跃光化学复合物。