International audienceWe examined bacterial colonization of transparent exopolymeric particles (TEP) in nutrient-manipulated mesocosms subjected to different turbulence intensities. We quantified heterotrophic bacterial abundance, production and diversity using fluorescence in situ hybridization (FISH). The abundance of attached bacteria increased significantly with TEP size in all treatments. The slope values of the number of bacteria scaled with TEP size varied from 1.15 on Day 1 to 2.04 on Day 11 in still and turbulent tanks, respectively. Comparison between these slopes indicated that the number of attached bacteria for a given TEP diameter was higher under turbulence. The addition of nutrients and turbulence in mesocosms neither suppor...
Phytoplankton produce large amounts of polysaccharide gel material known as transparent exopolymer p...
Aggregation of algae, mainly diatoms, is an important process in marine systems leading to the settl...
The focus of this dissertation is to observe and quantify the contribution of bacteria and their hab...
International audienceWe examined bacterial colonization of transparent exopolymeric particles (TEP)...
The production of transparent exopolymer particles (TEP) in response to several environmental variab...
We examined the influence of small-scale turbulence and its associated shear on bacterioplankton abu...
We examined the influence of small-scale turbulence and its associated shear on bacterioplankton abu...
Transparent exopolymer particles (TEP) exist abundantly in oceans and lakes and have been found to p...
The role of TEP (Transparent Exopolymer Particles) in the flocculation of a diatom bloom was studied...
International audienceThe effect of different small-scale turbulence intensities on transparent exop...
11 pages, 6 figures, 3 tablesWe performed laboratory experiments with natural seawater communities o...
The potential increase in nutrient flux towards bacteria owing to turbulent motion is insignificant ...
Abstract Transparent exopolymer particles (TEP) are polysaccharide-rich microgels that are prevalent...
The coupling between planktonic bacteria and bacterivorous protozoans was examined in microcosm expe...
Small-scale turbulence in the surface ocean is ubiquitous, influencing phytoplankton dynamics with c...
Phytoplankton produce large amounts of polysaccharide gel material known as transparent exopolymer p...
Aggregation of algae, mainly diatoms, is an important process in marine systems leading to the settl...
The focus of this dissertation is to observe and quantify the contribution of bacteria and their hab...
International audienceWe examined bacterial colonization of transparent exopolymeric particles (TEP)...
The production of transparent exopolymer particles (TEP) in response to several environmental variab...
We examined the influence of small-scale turbulence and its associated shear on bacterioplankton abu...
We examined the influence of small-scale turbulence and its associated shear on bacterioplankton abu...
Transparent exopolymer particles (TEP) exist abundantly in oceans and lakes and have been found to p...
The role of TEP (Transparent Exopolymer Particles) in the flocculation of a diatom bloom was studied...
International audienceThe effect of different small-scale turbulence intensities on transparent exop...
11 pages, 6 figures, 3 tablesWe performed laboratory experiments with natural seawater communities o...
The potential increase in nutrient flux towards bacteria owing to turbulent motion is insignificant ...
Abstract Transparent exopolymer particles (TEP) are polysaccharide-rich microgels that are prevalent...
The coupling between planktonic bacteria and bacterivorous protozoans was examined in microcosm expe...
Small-scale turbulence in the surface ocean is ubiquitous, influencing phytoplankton dynamics with c...
Phytoplankton produce large amounts of polysaccharide gel material known as transparent exopolymer p...
Aggregation of algae, mainly diatoms, is an important process in marine systems leading to the settl...
The focus of this dissertation is to observe and quantify the contribution of bacteria and their hab...