Shewanella oneidensis MR-1 are facultative aerobic electroactive bacteria with an appealing potential for sustainable energy production and bioremediation. They gather around air sources, forming aerotactic bands and biofilms. Here, we experimentally follow the evolution of the band around an air bubble, and we find good agreement with the numerical solutions of the pertinent transport equations. Video microscopy reveals a transition between motile and non-motile MR-1 upon oxygen depletion, preventing further development of the biofilm. We discover that MR-1 can alternate between longitudinal fast and sideways slow swimming. The resulting bimodal velocity distributions change in response to different oxygen concentrations and gradients, sup...
Biofilm formation is a complex process involving various signaling pathways and changes in gene expr...
Cell size control and homeostasis are fundamental features of bacterial metabolism. Recent work sugg...
2012-08-02Microbial fuel cells are batteries in which microorganisms catalyze the conversion of orga...
Shewanella oneidensis MR-1 are facultative aerobic electroactive bacteria with an appealing potentia...
3noThe dynamics of swimming microorganisms is strongly affected by solid-liquid and air-liquid inter...
AbstractMicrobes inhabiting Earth have adapted to diverse environments of water, air, soil, and ofte...
Many motile microorganisms are able to detect chemical gradients in their surroundings to bias their...
Shewanella oneidensis (S.o.) are a species of bacteria that can adapt to a broad variety of living c...
AbstractAerotaxis is a particular form of “energy taxis”. It is based on a largely elusive signal tr...
<p>Bacteria in nature are usually found in complex multicellular structures, called biofilms. One co...
How microorganisms interact with their environment and with their conspecifics depends strongly on t...
Aerobic bacteria often live in thin fluid layers near solid-air-water contact lines, where the biolo...
Biofilms are spatially organized microorganism colonies embedded in a self-produced matrix, conferri...
Bacteria in nature are usually found in complex multicellular structures, called biofilms. One commo...
ABSTRACT Exoelectrogenic bacteria are defined by their ability to respire on extracellular and insol...
Biofilm formation is a complex process involving various signaling pathways and changes in gene expr...
Cell size control and homeostasis are fundamental features of bacterial metabolism. Recent work sugg...
2012-08-02Microbial fuel cells are batteries in which microorganisms catalyze the conversion of orga...
Shewanella oneidensis MR-1 are facultative aerobic electroactive bacteria with an appealing potentia...
3noThe dynamics of swimming microorganisms is strongly affected by solid-liquid and air-liquid inter...
AbstractMicrobes inhabiting Earth have adapted to diverse environments of water, air, soil, and ofte...
Many motile microorganisms are able to detect chemical gradients in their surroundings to bias their...
Shewanella oneidensis (S.o.) are a species of bacteria that can adapt to a broad variety of living c...
AbstractAerotaxis is a particular form of “energy taxis”. It is based on a largely elusive signal tr...
<p>Bacteria in nature are usually found in complex multicellular structures, called biofilms. One co...
How microorganisms interact with their environment and with their conspecifics depends strongly on t...
Aerobic bacteria often live in thin fluid layers near solid-air-water contact lines, where the biolo...
Biofilms are spatially organized microorganism colonies embedded in a self-produced matrix, conferri...
Bacteria in nature are usually found in complex multicellular structures, called biofilms. One commo...
ABSTRACT Exoelectrogenic bacteria are defined by their ability to respire on extracellular and insol...
Biofilm formation is a complex process involving various signaling pathways and changes in gene expr...
Cell size control and homeostasis are fundamental features of bacterial metabolism. Recent work sugg...
2012-08-02Microbial fuel cells are batteries in which microorganisms catalyze the conversion of orga...