Department of Biophysics and Theoretical Biology, Barnes Laboratory, The University of Chicago, Chicago, Illinois 60637.
Plant Physiol. 1983 Jun;72(2):409-14. doi: 10.1104/pp.72.2.409.
The relative concentration of biliproteins, phycobilisomes, chlorophyll a, and reaction centers I and II are reported for Neoagardhiella bailyei, a macrophytic red alga collected in the field and compared with Anacystis nidulans, a cyanobacterium cultured in the laboratory. The ratios of chlorophyll to reaction center I, of chlorophyll to reaction center II, and the mass of phycobiliprotein per reaction center II are quite similar in Neoagardhiella and Anacystis, supporting the concept that the red algal chloroplast is derived from a cyanobacterial progenitor. The ratios of reaction center I to reaction center II are about 2.3 in both species. The Anacystis phycobilisome has about 40% of the mass of the Neoagardhiella phycobilisome, 4.9 and 14.9 x 10(6) daltons, respectively. The reaction center II/phycobilisome ratio is about 1.7 in Anacystis and 4.1 in Neoagardhiella. Phycobilisome size and physical restrictions on phycobilisome packing may be a major constraint on the reaction center II-phycobilisome association and the assembly of the photosynthetic membrane in both the red algae and cyanobacteria.
对野外采集的大型红藻 Neoagardhiella bailyei 和在实验室培养的蓝藻 Anacystis nidulans 进行了研究,报道了两者中胆红素蛋白、藻胆体、叶绿素 a 和反应中心 I、II 的相对浓度。Neoagardhiella 和 Anacystis 中叶绿素与反应中心 I、叶绿素与反应中心 II 的比值以及每个反应中心 II 的藻胆蛋白质量比都非常相似,这支持了红藻叶绿体是由蓝藻祖先衍生而来的概念。这两个物种的反应中心 I 与反应中心 II 的比值约为 2.3。Anacystis 的藻胆体质量约为 Neoagardhiella 藻胆体的 40%,分别为 4.9 和 14.9 x 10(6) 道尔顿。Anacystis 的反应中心 II/藻胆体比值约为 1.7,而 Neoagardhiella 的比值为 4.1。藻胆体的大小和藻胆体包装的物理限制可能是红藻和蓝藻中反应中心 II-藻胆体结合以及光合膜组装的主要限制因素。