International audienceBackgroundArsenic is present in numerous ecosystems and microorganisms have developed various mechanisms to live in such hostile environments. Herminiimonas arsenicoxydans, a bacterium isolated from arsenic contaminated sludge, has acquired remarkable capabilities to cope with arsenic. In particular our previous studies have suggested the existence of a temporal induction of arsenite oxidase, a key enzyme in arsenic metabolism, in the presence of As(III).ResultsMicroarrays were designed to compare gene transcription profiles under a temporal As(III) exposure. Transcriptome kinetic analysis demonstrated the existence of two phases in arsenic response. The expression of approximatively 14% of the whole genome was signifi...
Organisms have evolved the ability to tolerate toxic substances in their environments, often by prod...
Organisms have evolved the ability to tolerate toxic substances in their environments, often by prod...
The genus Thioalkalivibrio includes haloalkaliphilic chemolithoautotrophic sulfur-oxidizing bacteria...
International audienceBackgroundArsenic is present in numerous ecosystems and microorganisms have de...
Abstract Background Arsenic is present in numerous ecosystems and microorganisms have developed vari...
Background: Arsenic is present in numerous ecosystems and microorganisms have developed various mech...
This work was done in the frame of the Groupement de Recherche (GDR2909-CNRS): " Métabolisme de l'Ar...
Abstract Background Both the speciation and toxicity of arsenic are affected by bacterial transforma...
Bacterial strains belonging to the genus Rhodococcus are capable to degrade various toxic organic co...
International audienceThe arsenite-oxidizing strain Herminiimonas arsenicoxydans proteome was invest...
Bacterial strains belonging to the genus Rhodococcus are able to degrade various toxic organic compo...
L'arsenic est un métalloïde largement distribué dans l'environnement. Sous l'action des micro-organi...
International audienceExiguobacterium is a polyextremophile bacterial genus with a physiology that a...
Because arsenate [As(V)] reduction by bacteria can significantly enhance arsenic mobility in the env...
Organisms have evolved the ability to tolerate toxic substances in their environments, often by prod...
Organisms have evolved the ability to tolerate toxic substances in their environments, often by prod...
The genus Thioalkalivibrio includes haloalkaliphilic chemolithoautotrophic sulfur-oxidizing bacteria...
International audienceBackgroundArsenic is present in numerous ecosystems and microorganisms have de...
Abstract Background Arsenic is present in numerous ecosystems and microorganisms have developed vari...
Background: Arsenic is present in numerous ecosystems and microorganisms have developed various mech...
This work was done in the frame of the Groupement de Recherche (GDR2909-CNRS): " Métabolisme de l'Ar...
Abstract Background Both the speciation and toxicity of arsenic are affected by bacterial transforma...
Bacterial strains belonging to the genus Rhodococcus are capable to degrade various toxic organic co...
International audienceThe arsenite-oxidizing strain Herminiimonas arsenicoxydans proteome was invest...
Bacterial strains belonging to the genus Rhodococcus are able to degrade various toxic organic compo...
L'arsenic est un métalloïde largement distribué dans l'environnement. Sous l'action des micro-organi...
International audienceExiguobacterium is a polyextremophile bacterial genus with a physiology that a...
Because arsenate [As(V)] reduction by bacteria can significantly enhance arsenic mobility in the env...
Organisms have evolved the ability to tolerate toxic substances in their environments, often by prod...
Organisms have evolved the ability to tolerate toxic substances in their environments, often by prod...
The genus Thioalkalivibrio includes haloalkaliphilic chemolithoautotrophic sulfur-oxidizing bacteria...