Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone called the diffusive boundary layer (DBL), via their metabolic processes controlled by light intensity. Depending on the thickness of the DBL, sessile invertebrates such as calcifying bryozoans or tube‐forming polychaetes living on the surface of the blades can be affected by the chemical variations occurring in this microlayer. Especially in the context of ocean acidification (OA), these microhabitats might be considered as a refuge from lower pH, because during the day photosynthesis temporarily raises the pH to values higher than in the mainstream seawater. We assessed the thickness and the characteristics of the DBL at two pH levels (today's average s...
Metabolic processes have the potential to modulate the effects of ocean acidification (OA) in nearsh...
Ocean acidification (hereafter OA) is the process of increasing surface seawater CO2 and decreasing ...
Metabolic processes have the potential to modulate the effects of ocean acidification (OA) in nearsh...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone ...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone ...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone ...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone called the di...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone called the di...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone called the di...
Macroalgae are able to modify their local environment via biological processes, thereby creating a d...
Ocean acidification (OA), the ongoing decline in seawater pH, is predicted to have wide-ranging effe...
Ocean acidification (OA), the ongoing decline in seawater pH, is predicted to have wide-ranging effe...
Ocean acidification (OA), the ongoing decline in seawater pH, is predicted to have wide-ranging effe...
Metabolic processes have the potential to modulate the effects of ocean acidification (OA) in nearsh...
Metabolic processes have the potential to modulate the effects of ocean acidification (OA) in nearsh...
Metabolic processes have the potential to modulate the effects of ocean acidification (OA) in nearsh...
Ocean acidification (hereafter OA) is the process of increasing surface seawater CO2 and decreasing ...
Metabolic processes have the potential to modulate the effects of ocean acidification (OA) in nearsh...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone ...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone ...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone ...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone called the di...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone called the di...
Seaweeds are able to modify the chemical environment at their surface, in a micro‐zone called the di...
Macroalgae are able to modify their local environment via biological processes, thereby creating a d...
Ocean acidification (OA), the ongoing decline in seawater pH, is predicted to have wide-ranging effe...
Ocean acidification (OA), the ongoing decline in seawater pH, is predicted to have wide-ranging effe...
Ocean acidification (OA), the ongoing decline in seawater pH, is predicted to have wide-ranging effe...
Metabolic processes have the potential to modulate the effects of ocean acidification (OA) in nearsh...
Metabolic processes have the potential to modulate the effects of ocean acidification (OA) in nearsh...
Metabolic processes have the potential to modulate the effects of ocean acidification (OA) in nearsh...
Ocean acidification (hereafter OA) is the process of increasing surface seawater CO2 and decreasing ...
Metabolic processes have the potential to modulate the effects of ocean acidification (OA) in nearsh...