Chlorosis induced by nutrient deprivation in Synechococcus sp. strain PCC 7942: not all bleaching is the same
Open Access
- 1 July 1992
- journal article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 174 (14) , 4718-4726
- https://doi.org/10.1128/jb.174.14.4718-4726.1992
Abstract
Cell coloration changes from normal blue-green to yellow or yellow-green when the cyanobacterium Synechococcus sp. strain PCC 7942 is deprived of an essential nutrient. We found that this bleaching process (chlorosis) in cells deprived of sulfur (S) was similar to that in cells deprived of nitrogen (N), but that cells deprived of phosphorus (P) bleached differently. Cells divided once after N deprivation, twice after S deprivation, and four times after P deprivation. Chlorophyll (Chl) accumulation stopped almost immediately upon N or S deprivation but continued for several hours after P deprivation. There was no net Chl degradation during N, S, or P deprivation, although cellular Chl content decreased because cell division continued after Chl accumulation ceased. Levels of the light-harvesting phycobiliproteins declined dramatically in a rapid response to N or S deprivation, reflecting an ordered breakdown of the phycobilisomes (PBS). In contrast, P-deprived cultures continued to accumulate PBS for several hours. Whole PBS were not extensively degraded in P-deprived cells, although the PBS contents of P-deprived cells declined because of continued cell division after PBS accumulation ceased. Levels of mRNAs encoding PBS polypeptides declined by 90 to 95% in N- or S-deprived cells and by 80 to 85% in P-deprived cells. These changes in both the synthesis and stability of PBS resulted in a 90% decline in the PC/Chl ratio of N- or S-deprived cells and a 40% decline in the PC/Chl ratio of P-deprived cells. Therefore, although bleaching appears to be a general response to nutrient deprivation, it is not the same under all nutrient-limited conditions and is probably composed of independently controlled subprocesses.Keywords
This publication has 43 references indexed in Scilit:
- Specific bleaching of phycobiliproteins from cyanobacteria and red algae at high temperature in vivoArchiv für Mikrobiologie, 1989
- Adaptive eradication of methionine and cysteine from cyanobacterial light-harvesting proteinsNature, 1989
- Role of Phycoerythrin in Marine Picoplankton Synechococcus spp.Science, 1986
- Primary Role of the Cytoplasmic Membrane in Thermal Acclimation Evidenced in Nitrate-Starved Cells of the Blue-Green Alga, Anacystis nidulansPlant Physiology, 1986
- Biosynthesis of a 42-kD Polypeptide in the Cytoplasmic Membrane of the Cyanobacterium Anacystis nidulans Strain R2 during Adaptation to Low CO2 ConcentrationPlant Physiology, 1986
- Novel Role for Phycoerythrin in a Marine Cyanobacterium, Synechococcus Strain DC2Science, 1985
- Membrane Development in the Cyanobacterium, Anacystis nidulans, during Recovery from Iron StarvationPlant Physiology, 1985
- Acclimation Processes in the Light-Harvesting System of the Cyanobacterium Anacystis nidulans following a Light Shift from White to Red LightPlant Physiology, 1985
- CYANOBACTERIAL CELL INCLUSIONSAnnual Review of Microbiology, 1984
- Photochemical activity and components of membrane preparations from blue-green algae. I. Coexistence of two photosystems in relation to chlorophyll a and removal of phycocyaninBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1974