Bullerjahn G S, Post A F
Department of Biological Sciences, Bowling Green State University, OH 43403.
Crit Rev Microbiol. 1993;19(1):43-59. doi: 10.3109/10408419309113522.
The prochlorophytes are a diverse group of photosynthetic prokaryotes that fall within the cyanobacterial lineage, yet lack phycobilisomes as light harvesting structures. Instead, the prochlorophytes have a light-harvesting apparatus composed of the higher plant pigments chlorophylls a and b. This review discusses the evolutionary relationships among these bacteria, with focus on the structure and function of the photosynthetic apparatus. This analysis yields a consensus from studies both on Prochloron sp. and Prochlorothrix hollandica as to how the thylakoid membrane is organized. Overall, we propose that the structure of the light-harvesting complexes (LHC) from prochlorophytes is very different from those of chloroplast systems, and is evolutionarily very ancient. The functional association of the light-harvesting apparatus with photosystem I (PSI) in both Prochlorothrix and Prochloron, as well as a demonstrated capacity for PSI-dependent anoxygenic photosynthesis in Prochlorothrix, may indicate that there is an increased dependence on cyclic photophosphorylation in these organisms. Finally, the structure of the prochlorophyte thylakoid membrane is discussed with respect to the forces that drive thylakoid membrane stacking in prochlorophytes and chloroplasts. We suggest that the light-harvesting structures in prochlorophytes play little, if any, role in this process.
原绿藻是一群多样的光合原核生物,属于蓝细菌谱系,但缺乏作为光捕获结构的藻胆体。相反,原绿藻具有由高等植物色素叶绿素a和b组成的光捕获装置。本文综述讨论了这些细菌之间的进化关系,重点是光合装置的结构和功能。这一分析得出了关于原绿藻属和荷兰原绿丝藻的类囊体膜如何组织的研究共识。总体而言,我们认为原绿藻的光捕获复合物(LHC)结构与叶绿体系统的结构非常不同,并且在进化上非常古老。在原绿丝藻和原绿藻中,光捕获装置与光系统I(PSI)的功能关联,以及原绿丝藻中已证明的依赖PSI的无氧光合作用能力,可能表明这些生物体对循环光合磷酸化的依赖性增加。最后,讨论了原绿藻类囊体膜的结构,涉及驱动原绿藻和叶绿体中类囊体膜堆叠的力量。我们认为原绿藻中的光捕获结构在这一过程中即使有作用也很小。