International audienceDesulfovibrio species are representatives of microorganisms at the boundary between anaerobic and aer-obic lifestyles, since they contain the enzymatic systems required for both sulfate and oxygen reduction. However, the latter has been shown to be solely a protective mechanism. By implementing the oxygen-driven experimental evolution of Desulfovi-brio vulgaris Hildenborough, we have obtained strains that have evolved to grow with energy derived from oxidative phosphorylation linked to oxygen reduction. We show that a few mutations are sufficient for the emergence of this phenotype and reveal two routes of evolution primarily involving either inactivation or overexpression of the gene encoding heterodisulfide reductase...
Interspecies hydrogen transfer between organisms producing and consuming hydrogen promotes the decom...
AbstractSulfate-reducing bacteria are considered as strict anaerobic microorganisms, in spite of the...
A chemostat coculture of the sulfate-reducing bacterium Desulfovibrio oxyclinae together with a facu...
International audienceDesulfovibrio species are representatives of microorganisms at the boundary be...
Les bactéries du genre Desulfovibrio sont des microorganismes anaérobies sulfato-réducteurs à la cro...
Sulfate-reducing bacteria play major roles in the global carbon and sulfur cycles, but it remains un...
Although obligate anaerobe, the sulfate-reducing bacterium Desulfovibrio vulgaris Hilden-borough (Dv...
International audienceAlthough obligate anaerobe, the sulfate-reducing bacterium Desulfovibrio vulga...
Although obligate anaerobe, the sulfate-reducing bacterium Desulfovibrio vulgaris Hildenborough (DvH...
<div><p>Although obligate anaerobe, the sulfate-reducing bacterium <i>Desulfovibrio vulgaris</i> Hil...
In an investigation on the oxygen tolerance of sulfate-reducing bacteria, a strain was isolated from...
Progress in the genetic manipulation of the Desulfovibrio strains has provided an opportunity to exp...
Growth and chemotactic behavior in oxic–anoxic gradients were studied with two freshwater and four m...
AbstractSulfate reducing bacteria of the Desulfovibrio genus are considered anaerobes, in spite of t...
Interspecies hydrogen transfer between organisms producing and consuming hydrogen promotes the decom...
Interspecies hydrogen transfer between organisms producing and consuming hydrogen promotes the decom...
AbstractSulfate-reducing bacteria are considered as strict anaerobic microorganisms, in spite of the...
A chemostat coculture of the sulfate-reducing bacterium Desulfovibrio oxyclinae together with a facu...
International audienceDesulfovibrio species are representatives of microorganisms at the boundary be...
Les bactéries du genre Desulfovibrio sont des microorganismes anaérobies sulfato-réducteurs à la cro...
Sulfate-reducing bacteria play major roles in the global carbon and sulfur cycles, but it remains un...
Although obligate anaerobe, the sulfate-reducing bacterium Desulfovibrio vulgaris Hilden-borough (Dv...
International audienceAlthough obligate anaerobe, the sulfate-reducing bacterium Desulfovibrio vulga...
Although obligate anaerobe, the sulfate-reducing bacterium Desulfovibrio vulgaris Hildenborough (DvH...
<div><p>Although obligate anaerobe, the sulfate-reducing bacterium <i>Desulfovibrio vulgaris</i> Hil...
In an investigation on the oxygen tolerance of sulfate-reducing bacteria, a strain was isolated from...
Progress in the genetic manipulation of the Desulfovibrio strains has provided an opportunity to exp...
Growth and chemotactic behavior in oxic–anoxic gradients were studied with two freshwater and four m...
AbstractSulfate reducing bacteria of the Desulfovibrio genus are considered anaerobes, in spite of t...
Interspecies hydrogen transfer between organisms producing and consuming hydrogen promotes the decom...
Interspecies hydrogen transfer between organisms producing and consuming hydrogen promotes the decom...
AbstractSulfate-reducing bacteria are considered as strict anaerobic microorganisms, in spite of the...
A chemostat coculture of the sulfate-reducing bacterium Desulfovibrio oxyclinae together with a facu...