Neuschaefer-Rube Olaf, Böger Peter, Ernst Anneliese
Lehrstuhl für Physiologie und Biochemie der Pflanzen, Universität Konstanz, D-78457 Konstanz, Germany.
Biochim Biophys Acta. 2002 Feb 15;1553(3):279-95. doi: 10.1016/s0005-2728(01)00249-3.
Complementary chromatic adaptation was studied in two unicellular diazotrophic Synechocystis-type cyanobacteria, strains BO 8402 and BO 9201. Strain BO 8402 was isolated from Lake Constance as a mutant lacking phycobilisomes due to an insertion sequence element in the gene apcA, encoding alpha-allophycocyanin. Strain BO 9201 recovered the ability to assemble functional phycobilisomes after a spontaneous excision of the insertion sequence element in apcA. Simultaneously, the strain became able to perform group II complementary chromatic adaptation by regulating the synthesis of phycoerythrin. The two strains had identical phycoerythrin operons, cpeBA, and similar-sized transcripts were formed upon induction by green light. However, in strain BO 8402 the cpeBA transcript level was approx. 20-fold lower than in strain BO 9201. Because strain BO 8402 cannot synthesize allophycocyanin and phycocyanin is sequestered in paracrystalline inclusion bodies, non-assembled phycoerythrin may accumulate inside the cells. It was examined whether non-assembled phycoerythrin or other effects caused by the absence of phycobilisomes, such as a permanently oxidized redox status of the photosynthetic electron transport chain or a distorted ratio of C and N assimilation mediated the repression of cpeBA transcription in strain BO 8402. No such links could be established. We therefore concluded that in these diazotrophic Synechocystis-type cyanobacteria the green light-induced transcription of the cpe operon directly required a functional apc operon.
在两种单细胞固氮蓝藻(集胞藻属)BO 8402和BO 9201菌株中研究了互补色适应。BO 8402菌株是从康斯坦茨湖分离得到的突变体,由于编码α-别藻蓝蛋白的基因apcA中存在插入序列元件,该菌株缺乏藻胆体。BO 9201菌株在apcA中的插入序列元件自发切除后恢复了组装功能性藻胆体的能力。同时,该菌株能够通过调节藻红蛋白的合成来进行II型互补色适应。这两种菌株具有相同的藻红蛋白操纵子cpeBA,在绿光诱导下形成大小相似的转录本。然而,在BO 8402菌株中,cpeBA转录本水平比BO 9201菌株低约20倍。由于BO 8402菌株不能合成别藻蓝蛋白,且藻蓝蛋白被隔离在准晶体包涵体中,未组装的藻红蛋白可能在细胞内积累。研究了未组装的藻红蛋白或藻胆体缺失引起的其他效应,如光合电子传递链的永久氧化还原状态或碳氮同化比例的扭曲,是否介导了BO 8402菌株中cpeBA转录的抑制。未建立这样的联系。因此,我们得出结论,在这些固氮集胞藻属蓝藻中,绿光诱导的cpe操纵子转录直接需要一个功能性的apc操纵子。