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Hybrid sideways/longitudinal swimming in the monoflagellate Shewanella oneidensis: from aerotactic band to biofilm.


ABSTRACT: 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, supporting the biological functions of aerotaxis and confinement.

SUBMITTER: Stricker L 

PROVIDER: S-EPMC7653395 | biostudies-literature | 2020 Oct

REPOSITORIES: biostudies-literature

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Hybrid sideways/longitudinal swimming in the monoflagellate <i>Shewanella oneidensis</i>: from aerotactic band to biofilm.

Stricker Laura L   Guido Isabella I   Breithaupt Thomas T   Mazza Marco G MG   Vollmer Jürgen J  

Journal of the Royal Society, Interface 20201028 171


<i>Shewanella oneidensis</i> 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 depletio  ...[more]

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