Sedimentation of pelagic cyanobacteria in dystrophic freshwater and oligohaline lagoons results in large inputs of labile organic matter (OM) to the benthos. We used an experimental approach to study the short-term impact of such phenomena on the benthic microbial community metabolism and on the nitrogen (N) fluxes across the sediment-water interface. We hypothesized an increase of respiratory activity, including N loss via denitrification and its recycling to the water column. Our results show that the incorporation within sediments of the settled bloom increases benthic bacterial activities. This is coupled to large DON and NH4+ effluxes, and to a comparatively smaller increase of N2 production, while no significant effects were detected ...
We performed a 15N-labeling study to investigate nitrogen incorporation and retention by the benthic...
Invertebrate animals that live at the bottom of aquatic ecosystems (i.e., benthic macrofauna) are im...
Marchant HK, Ahmerkamp S, Lavik G, et al. Denitrifying community in coastal sediments performs aerob...
Sedimentation of pelagic cyanobacteria in dystrophic freshwater and oligohaline lagoons results in l...
Sedimentation of pelagic cyanobacteria in dystrophic freshwater and oligohaline lagoons results in l...
Sedimentation of pelagic cyanobacteria in dystrophic freshwater and oligohaline lagoons results in l...
Marine waters are often nitrogen (N) limited. Denitrification, the microbial conversion of nitrate t...
We combined a mass balance approach with measurements of air-water and sediment-water nitrogen (N) e...
Marine soft sediments form the second largest habitat on the planet. Organisms residing in this envi...
Marine soft sediments form the second largest habitat on the planet. Organisms residing in this envi...
Inorganic nitrogen and oxygen fluxes together with coupled-uncoupled denitrification were studied in...
Macrofauna can produce contrasting biogeochemical effects in intact and reconstructed sediments. We ...
Macrofauna can produce contrasting biogeochemical effects in intact and reconstructed sediments. We ...
Macrofauna can produce contrasting biogeochemical effects in intact and reconstructed sediments. We ...
Macrofauna can produce contrasting biogeochemical effects in intact and reconstructed sediments. We ...
We performed a 15N-labeling study to investigate nitrogen incorporation and retention by the benthic...
Invertebrate animals that live at the bottom of aquatic ecosystems (i.e., benthic macrofauna) are im...
Marchant HK, Ahmerkamp S, Lavik G, et al. Denitrifying community in coastal sediments performs aerob...
Sedimentation of pelagic cyanobacteria in dystrophic freshwater and oligohaline lagoons results in l...
Sedimentation of pelagic cyanobacteria in dystrophic freshwater and oligohaline lagoons results in l...
Sedimentation of pelagic cyanobacteria in dystrophic freshwater and oligohaline lagoons results in l...
Marine waters are often nitrogen (N) limited. Denitrification, the microbial conversion of nitrate t...
We combined a mass balance approach with measurements of air-water and sediment-water nitrogen (N) e...
Marine soft sediments form the second largest habitat on the planet. Organisms residing in this envi...
Marine soft sediments form the second largest habitat on the planet. Organisms residing in this envi...
Inorganic nitrogen and oxygen fluxes together with coupled-uncoupled denitrification were studied in...
Macrofauna can produce contrasting biogeochemical effects in intact and reconstructed sediments. We ...
Macrofauna can produce contrasting biogeochemical effects in intact and reconstructed sediments. We ...
Macrofauna can produce contrasting biogeochemical effects in intact and reconstructed sediments. We ...
Macrofauna can produce contrasting biogeochemical effects in intact and reconstructed sediments. We ...
We performed a 15N-labeling study to investigate nitrogen incorporation and retention by the benthic...
Invertebrate animals that live at the bottom of aquatic ecosystems (i.e., benthic macrofauna) are im...
Marchant HK, Ahmerkamp S, Lavik G, et al. Denitrifying community in coastal sediments performs aerob...