The sulfate-reducing bacteria have been isolated from human intestine. These bacteria are identified by their morphological, physiological and biochemical characteristics as the Desulfovibrio sp. and Desulfomicrobium sp. according to Bergey’s Manual of Determinative Bacteriology. Growth of the isolated strains of bacteria has been studied under various conditions including types of media, effect of oxygen, pH, and temperature. Bacterial growth in the modified Kravtsov-Sorokin’s medium, and process of dissimilatory sulfate reduction by the selected strains of bacteria have been investigated. All obtained bacterial cultures used sulfate and lactate intensively as well as produced hydrogen sulfide and acetate in the medium. The Desulfovibrio...
Hydrogen sulfide is formed in the human intestinal tract as the end product of the anaerobic microbi...
The study of the intestinal sulfate-reducing bacteria, the process of dissimilatory sulfate reductio...
A new moderately halophilic sulfate-reducing bacterium (strain H (1) (T) ) was enriched and isolated...
New strains of sulfate-reducing bacteria from human intestine are obtained. These bacteria are vibri...
The metabolic and corrosion activity of sulfate-reducing bacteria isolated from technogenic ecotopes...
Modern literature data concerning sulfate-reducing bacteria of human intestine are summarized. The c...
Aim: to isolate the sulfate-reducing bacteria from the system of sewage treatment in the city of Lvi...
Growth of Desulfovibrio piger Vib-7 bacteria of human intestine under the influence of the electron ...
A sulfate-reducing bacterium, was isolated from a 6 month trained enrichment culture in an anaerobic...
A sulfate-reducing bacterium, was isolated from a 6 month trained enrichment culture in an anaerobic...
Sulfate-reducing bacteria (SRB) are anaerobic microorganisms, which use sulfate as an electron accep...
Hydrogen sulfide is formed in the human intestinal tract as the end product of the anaerobic microbi...
Eleven pure strains of sulfate-reducing bacteria have been isolated from lab-scale bioreactors or di...
Hydrogen sulfide is formed in the human intestinal tract as the end product of the anaerobic microbi...
Lower intraluminal colonic pH is an indication for the development of inflammatory bowel disease inc...
Hydrogen sulfide is formed in the human intestinal tract as the end product of the anaerobic microbi...
The study of the intestinal sulfate-reducing bacteria, the process of dissimilatory sulfate reductio...
A new moderately halophilic sulfate-reducing bacterium (strain H (1) (T) ) was enriched and isolated...
New strains of sulfate-reducing bacteria from human intestine are obtained. These bacteria are vibri...
The metabolic and corrosion activity of sulfate-reducing bacteria isolated from technogenic ecotopes...
Modern literature data concerning sulfate-reducing bacteria of human intestine are summarized. The c...
Aim: to isolate the sulfate-reducing bacteria from the system of sewage treatment in the city of Lvi...
Growth of Desulfovibrio piger Vib-7 bacteria of human intestine under the influence of the electron ...
A sulfate-reducing bacterium, was isolated from a 6 month trained enrichment culture in an anaerobic...
A sulfate-reducing bacterium, was isolated from a 6 month trained enrichment culture in an anaerobic...
Sulfate-reducing bacteria (SRB) are anaerobic microorganisms, which use sulfate as an electron accep...
Hydrogen sulfide is formed in the human intestinal tract as the end product of the anaerobic microbi...
Eleven pure strains of sulfate-reducing bacteria have been isolated from lab-scale bioreactors or di...
Hydrogen sulfide is formed in the human intestinal tract as the end product of the anaerobic microbi...
Lower intraluminal colonic pH is an indication for the development of inflammatory bowel disease inc...
Hydrogen sulfide is formed in the human intestinal tract as the end product of the anaerobic microbi...
The study of the intestinal sulfate-reducing bacteria, the process of dissimilatory sulfate reductio...
A new moderately halophilic sulfate-reducing bacterium (strain H (1) (T) ) was enriched and isolated...