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Monitoring Spatial Segregation in Surface Colonizing Microbial Populations
Published on: October 29, 2016
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Cable bacteria colonise new sediment environments through water column dispersal
Jesper R van Dijk1, Jeanine S Geelhoed1, Philip Ley1
1Research group Geobiology, Department of Biology, University of Antwerp, Antwerp, Belgium.
Environmental Microbiology
|October 16, 2024
Summary
Marine cable bacteria disperse via small filament fragments, or "snippets," which travel through oxygenated waters attached to sediment particles. This mechanism aids their spread in diverse marine environments.
Area of Science:
- Microbiology
- Environmental Science
- Biogeochemistry
Background:
- Cable bacteria are globally distributed filamentous microorganisms.
- They possess a unique metabolism enabling long-distance electron transport, crucial for sediment elemental cycling.
- Oxygen inhibits cable bacteria, presenting a challenge for dispersal through oxygenated aquatic environments.
Purpose of the Study:
- To investigate the dispersal mechanisms of marine cable bacteria in oxygenated conditions.
- To understand how cable bacteria colonize new environments despite oxygen sensitivity.
Main Methods:
- A compartmentalized microcosm experiment was designed.
- Cable bacteria were cultured in natural sediment ('source') and their activity monitored in sterilized sediment ('destination') exposed to oxygenated seawater.
- Filament fragments ('snippets') and their association with sediment particles were analyzed.
Main Results:
- Cable bacteria successfully colonized destination cores over weeks, with each core containing a single strain.
- Filament 'snippets' (approx. 15 cells) were found in the microcosm water.
- Approximately 30% of these snippets were attached to sediment particles, suggesting a protective association.
- Snippet release was also observed in natural salt marsh environments.
Conclusions:
- A model for cable bacteria dispersal in oxygenated waters was proposed, involving filament breakage into snippets.
- These snippets are released into the water column and transported, likely protected by sediment particles.
- This dispersal strategy contributes to microbial community assembly and prokaryotic biogeography in marine sediments.
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