Cahen D, Malkin S
The Weizmann Institute of Science, Departments of Chemistry and Biochemistry, Rehovot, Israel.
Plant Physiol. 1977 Dec;60(6):845-9. doi: 10.1104/pp.60.6.845.
In a previous work the development of photosystem II activity during the greening process of the y-1 mutant of Chlamydomonas reinhardi was studied (Cahen, Malkin, Shochat, Ohad. Plant Physiol 58: 257-267). Measurements of quantum yield, maximal rate of electron transfer, flash yield, and fluorescence induction indicated that photosystem II development consists of two partially overlapping phases: (a) reorganization and integration of preexisting units; and (b) addition of newly formed units to the growing membranes.In the present work an attempt was made to study these two processes independently. This was achieved using two experimental systems: (a) cells of the y-1 mutant, greened in the presence of chloramphenicol (CAP), whose activity is repaired under conditions which prevent further chlorophyll synthesis and membrane growth (dark or light with addition of cycloheximide [CHI]); (b) greening cells of a pale mutant derived from y-1 in which chloroplast membranes are formed gradually during several cell divisions.In both systems different parameters of 2,6-dichlorophenolindophenol reduction, as well as fluorescence, were measured. The results are interpreted using a kinetic model reported previously. It is concluded that during repair of photosynthetic activity in inactive membranes which were formed previously in the presence of chloramphenicol, photosystem II reaction centers are formed and integrated in preexisting membranes. In the pale green there is complete de novo synthesis of units of constant composition which are added during formation of new chloroplast membranes.
在之前的一项研究中,对莱茵衣藻y-1突变体绿化过程中光系统II活性的发展进行了研究(卡亨、马尔金、肖查特、奥哈德。《植物生理学》58:257-267)。量子产率、最大电子传递速率、闪光产率和荧光诱导的测量结果表明,光系统II的发展包括两个部分重叠的阶段:(a)先前存在的单元的重组和整合;(b)向生长的膜中添加新形成的单元。在本研究中,试图独立研究这两个过程。这是通过两个实验系统实现的:(a)在氯霉素(CAP)存在下绿化的y-1突变体细胞,其活性在防止进一步叶绿素合成和膜生长的条件下(黑暗或添加环己酰亚胺[CHI]的光照)得到修复;(b)源自y-1的浅色突变体的绿化细胞,其中叶绿体膜在几个细胞分裂过程中逐渐形成。在这两个系统中,测量了2,6-二氯酚靛酚还原的不同参数以及荧光。使用先前报道的动力学模型对结果进行了解释。得出的结论是,在先前在氯霉素存在下形成的无活性膜的光合活性修复过程中,光系统II反应中心在先前存在的膜中形成并整合。在浅绿色中,有恒定组成单元的完全从头合成,这些单元在新叶绿体膜形成过程中被添加。