A new bacteriochlorophyll b containing phototrophic bacterium was isolated from extremely saline and alkaline soda lakes in Egypt. Enrichment and isolation were performed using a synthetic medium with high contents of sodium carbonate, sodium sulfate and sodium chloride. Photoautotrophic growth occurred with hydrogen sulfide as photosynthetic electron donor. During oxidation of sulfide to sulfate extracellular elemental sulfur globules appeared in the medium. Cells were also capable to grow under photoheterotrophic conditions with acetate, propionate, pyruvate, succinate, fumarate or malate as carbon sources and electron donors. Under these conditions sulfate was assimilated. Optimal growth under the applied experimental conditions occurred...
The inorganic sulfur oxidation by obligate haloalkaliphilic chemolithoautotrophs was only recently d...
Halophiles (lat. “salt-loving”) is the taxonomic group of extreme aerobic microorganisms that live i...
International audienceA novel slightly halophilic sulfate-reducing bacterium, designated strain P1BS...
A new species of the genus Ectothiorhodospira is described isolated from alkaline soda lakes of the ...
During studies of moderately halophilic strains of Ectothiorhodospira from steppe soda lakes, we fou...
Anoxygenic phototrophic purple sulfur bacteria belonging to the Ectothiorhodospiraceae inhabit alkal...
Life exists in a wide range of environments with prokaryotic organisms inhabiting those considered m...
Unexpectedly high culturable diversity of moderately and extremely halophilic obligately chemolithoa...
Ectothiorhodospira mobilis is a halophilic phototrophic bacterium that has been isolated from soda l...
Two strains of a new purple sulfur bacterium were isolated in pure culture from the littoral sedimen...
Chemotrophic sulfur-oxidizing bacteria (SOB) represent an important functional group of microorganis...
Halophilic microorganisms inhabiting hypersaline environments such as salt lakes, Dead Sea, or salt ...
Two strains of a novel species of phototrophic micro-organism were isolated from the sediments of a ...
A spherical-shaped, phototrophic, purple sulfur bacterium was isolated in pure culture from anoxic s...
The Ectothiorhodospiraceae family represents purple sulfur bacteria of the Gammaproteobacteria found...
The inorganic sulfur oxidation by obligate haloalkaliphilic chemolithoautotrophs was only recently d...
Halophiles (lat. “salt-loving”) is the taxonomic group of extreme aerobic microorganisms that live i...
International audienceA novel slightly halophilic sulfate-reducing bacterium, designated strain P1BS...
A new species of the genus Ectothiorhodospira is described isolated from alkaline soda lakes of the ...
During studies of moderately halophilic strains of Ectothiorhodospira from steppe soda lakes, we fou...
Anoxygenic phototrophic purple sulfur bacteria belonging to the Ectothiorhodospiraceae inhabit alkal...
Life exists in a wide range of environments with prokaryotic organisms inhabiting those considered m...
Unexpectedly high culturable diversity of moderately and extremely halophilic obligately chemolithoa...
Ectothiorhodospira mobilis is a halophilic phototrophic bacterium that has been isolated from soda l...
Two strains of a new purple sulfur bacterium were isolated in pure culture from the littoral sedimen...
Chemotrophic sulfur-oxidizing bacteria (SOB) represent an important functional group of microorganis...
Halophilic microorganisms inhabiting hypersaline environments such as salt lakes, Dead Sea, or salt ...
Two strains of a novel species of phototrophic micro-organism were isolated from the sediments of a ...
A spherical-shaped, phototrophic, purple sulfur bacterium was isolated in pure culture from anoxic s...
The Ectothiorhodospiraceae family represents purple sulfur bacteria of the Gammaproteobacteria found...
The inorganic sulfur oxidation by obligate haloalkaliphilic chemolithoautotrophs was only recently d...
Halophiles (lat. “salt-loving”) is the taxonomic group of extreme aerobic microorganisms that live i...
International audienceA novel slightly halophilic sulfate-reducing bacterium, designated strain P1BS...