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Influence of Light on Particulate Organic Matter Utilization by Attached and Free-Living Marine Bacteria
- Source :
- Frontiers in Microbiology, Vol 10 (2019), Frontiers in Microbiology
- Publication Year :
- 2019
- Publisher :
- Frontiers Media S.A., 2019.
-
Abstract
- While the impact of light on primary productivity in aquatic systems has been studied for decades, the role light plays in the degradation of photosynthetically-produced biomass is less well understood. We investigated the patterns of light-induced particle breakdown and bacterial assimilation of detrital C and N using13C and15N labeled freeze-thawed diatom cells incubated in laboratory microcosms with a marine microbial community freshly-collected from the Pacific Ocean. Particles incubated in the dark resulted in increased bacterial counts and dissolved organic carbon concentrations compared to those incubated in the light. Light also influenced the attached and free-living microbial community structure as detected by 16S rRNA gene amplicon sequencing. For example, bacterial taxa from the Sphingobacteriia were enriched on dark-incubated particles and taxa from the family Flavobacteriaceae and the genus Pseudoalteromonas were numerically enriched on particles in the light. Isotope incorporation analysis by phylogenetic microarray and NanoSIMS (a method called Chip-SIP) identified free-living and attached microbial taxa able to incorporate N and C from the particles. Some taxa, including members of the Flavobacteriaceae and Cryomorphaceae, exhibited increased isotope incorporation in the light, suggesting the use of photoheterotrophic metabolisms. In contrast, some members of Oceanospirillales and Rhodospirillales showed decreased isotope incorporation in the light, suggesting that their heterotrophic metabolism, particularly when occurring on particles, might increase at night or may be inhibited by sunlight. These results show that light influences particle degradation and C and N incorporation by attached bacteria, suggesting that the transfer between particulate and free-living phases are likely affected by external factors that change with the light regime, such as time of day, depth and season.
- Subjects :
- Microbiology (medical)
proteorhodopsin
free-living bacterioplankton
Heterotroph
lcsh:QR1-502
photoheterotrophy
Microbiology
Photoheterotroph
Oceanospirillales
lcsh:Microbiology
03 medical and health sciences
Marine bacteriophage
Dissolved organic carbon
Original Research
030304 developmental biology
0303 health sciences
biology
030306 microbiology
Chemistry
aerobic anoxygenic phototrophy
biology.organism_classification
Flavobacteriaceae
Diatom
Microbial population biology
13. Climate action
particle-attached bacterioplankton
Environmental chemistry
microbial loop
Microcosm
Microbial loop
Subjects
Details
- Language :
- English
- Volume :
- 10
- Database :
- OpenAIRE
- Journal :
- Frontiers in Microbiology
- Accession number :
- edsair.doi.dedup.....9a7f229648d41e7c2a38fd1360303087