Association of a new type of gliding, filamentous, purple phototrophic bacterium inside bundles of Microcoleus chthonoplastes in hypersaline cyanobacterial mats
- 1 April 1987
- journal article
- research article
- Published by Springer Nature in Archiv für Mikrobiologie
- Vol. 147 (3) , 213-220
- https://doi.org/10.1007/bf00463477
Abstract
An unidentified filamentous purple bacterium, probably belonging to a new genus or even a new family, is found in close association with the filamentous, mat-forming cyanobacterium Microcoleus chthonoplastes in a hypersaline pond at Guerrero Negro, Baja California Sur, Mexico, and in Solar Lake, Sinai, Egypt. This organism is a gliding, segmented trichome, 0.8–0.9 μm wide. It contains intracytoplasmic stacked lamellae which are perpendicular and obliquely oriented to the cell wall, similar to those described for the purple sulfur bacteria Ectothiorhodospira. These bacteria are found inside the cyanobacterial bundle, enclosed by the cyanobacterial sheath. Detailed transmission electron microscopical analyses carried out in horizontal sections of the upper 1.5 mm of the cyanobacterial mat show this cyanobacterial-purple bacterial association at depths of 300–1200 μm, corresponding to the zone below that of maximal oxygenic photosynthesis. Sharp gradients of oxygen and sulfide are established during the day at this microzone in the two cyanobacterial mats studied. The close association, the distribution pattern of this association and preliminary physiological experiments suggest a co-metabolism of sulfur by the two-membered community. This probable new genus of purple bacteria may also grow photoheterotrophically using organic carbon excreted by the cyanobacterium. Since the chemical gradients in the entire photic zone fluctuate widely in a diurnal cycle, both types of metabolism probably take place. During the morning and afternoon, sulfide migrates up to the photic zone allowing photoautotrophic metabolism with sulfide as the electron donor. During the day the photic zone is highly oxygenated and the purple bacteria may either use oxidized species of sulfur such as elemental sulfur and thiosulfate in the photoautotrophic mode or grow photoheterotrophically using organic carbon excreted by M. chthonoplastes. The new type of filamentous purple sulfur bacteria is not available yet in pure culture, and its taxonomical position cannot be fully established. This organism is suggested to be a new type of gliding, filamentous, purple phototroph.Keywords
This publication has 32 references indexed in Scilit:
- Photosynthesis and structure of benthic microbial mats: Microelectrode and SEM studies of four cyanobacterial communities1Limnology and Oceanography, 1983
- PHOTOTROPHIC GREEN AND PURPLE BACTERIA: A COMPARATIVE, SYSTEMATIC SURVEYAnnual Review of Microbiology, 1977
- Solar Lake (Sinai). 4. Stromatolitic cyanobacterial mats1Limnology and Oceanography, 1977
- Solar Lake (Sinai). 2. Distribution of photosynthetic microorganisms and primary production1Limnology and Oceanography, 1977
- The phototrophic bacteria and their role in the sulfur cyclePlant and Soil, 1975
- A phototrophic gliding filamentous bacterium of hot springs, Chloroflexus aurantiacus, gen. and sp. nov.Archiv für Mikrobiologie, 1974
- Membranes of photosynthetic bacteriaBiochimica et Biophysica Acta (BBA) - Reviews on Biomembranes, 1972
- Cytomembrane Differentiation in the Endoplasmic Reticulum-Golgi Apparatus-Vesicle ComplexScience, 1968
- Fine structure of Ectothiorhodospira mobilis strain 8113 thylakoids: Chemical fixation and freeze-etching studiesArchiv für Mikrobiologie, 1968
- THE USE OF LEAD CITRATE AT HIGH pH AS AN ELECTRON-OPAQUE STAIN IN ELECTRON MICROSCOPYThe Journal of cell biology, 1963