Dubertret G, Lefort-Tran M
Biochim Biophys Acta. 1978 Aug 8;503(2):316-32. doi: 10.1016/0005-2728(78)90191-3.
The relationships between light-harvesting chlorophyll and reaction centers in Photosystem II were analyzed during the chloroplast development of dark-grown, non-dividing Euglena gracilis Z. Comparative measurements included light saturation of photosynthesis, oxygen evolution under flashing-light and fluorescence induction. The results obtained can be summarized as follows: (1) Photosystem II photocenters are formed in parallel with chlorophyll synthesis, but after a long lag phase. (2) As a consequence, the chlorophyll reaction center ratio (Emerson's type photosynthetic unit) decreases during greening. (3) This decrease is accompanied by considerable changes in the energy transfer and trapping properties of Photosystem II. Most of the initially synthesized chlorophylls are inactive in the transfer of excitations to active photochemical centers and are shared among newly formed Photosystem II photocenters; as a consequence, the number of chlorophylls functionally connected to each Photosystem II photocenter decreases and cooperatively between these centers appears. Results are discussed in terms of chlorophyll organization in developing photosynthetic membranes with reference to the lake or puddle models of photosynthetic unit organization.
在黑暗中生长、不分裂的纤细裸藻(Euglena gracilis Z)叶绿体发育过程中,分析了光系统II中捕光叶绿素与反应中心之间的关系。比较测量包括光合作用的光饱和、闪光下的氧气释放和荧光诱导。所得结果可总结如下:(1)光系统II光中心与叶绿素合成同时形成,但有很长的延迟期。(2)因此,叶绿素反应中心比率(爱默生型光合单位)在绿化过程中降低。(3)这种降低伴随着光系统II能量转移和捕获特性的显著变化。最初合成的大部分叶绿素在将激发能转移到活性光化学中心方面是无活性的,并在新形成的光系统II光中心之间共享;因此,与每个光系统II光中心功能相连的叶绿素数量减少,并且这些中心之间出现协同作用。根据发育中的光合膜中的叶绿素组织,并参考光合单位组织的湖泊或水坑模型对结果进行了讨论。