The dataset includes net and gross primary production, respiration and epiphyte load on the brown algae Fucus vesiculosus under a temperature gradient (5-25 ºC). Under the same temperature gradient, we present physiological responses of Idotea balthica, i.e. respiration, feces production, growth and carbon consumption
Respiration of ectotherms is predicted to increase faster with rising environmental temperature than...
Temperature is one of the environmental factors that most strongly influence the life of microalgae,...
<p>Microphytobenthos and turf algae were incubated to determine oxygen fluxes (net photosynthesis an...
Warming is one of the most dramatic aspects of climate change and threatens future ecosystem functio...
Ocean warming and acidification may substantially affect the photophysiological performance of keyst...
Seaweeds provide important ecosystem services in coastal areas, and loss of these macrophytes due to...
The brown macroalga Fucus vesiculosus is a foundation species in temperate rocky shores, subjected t...
The decline of kelps and algal canopies and the expansion of algal turfs because of global change is...
Shallow coastal marine ecosystems are exposed to intensive warming events in the last decade, threat...
Shallow coastal marine ecosystems are exposed to intensive warming events in the last decade, threat...
Normalised maximum quantum yield (Fv/Fm) for the alga Fucus vesiculosus from the leading (Greenland,...
Warming and acidification of the oceans as a consequence of increasing CO2-concentrations occur at l...
© 2015 New Phytologist Trust. Macroalgae live in an ever-changing light environment affected by wave...
© 2016 Baker, Robinson, Radford, McInnes, Evenhuis and Doblin. How the functional traits (FTs) of ph...
Respiration of ectotherms is predicted to increase faster with rising environmental temperature than...
Respiration of ectotherms is predicted to increase faster with rising environmental temperature than...
Temperature is one of the environmental factors that most strongly influence the life of microalgae,...
<p>Microphytobenthos and turf algae were incubated to determine oxygen fluxes (net photosynthesis an...
Warming is one of the most dramatic aspects of climate change and threatens future ecosystem functio...
Ocean warming and acidification may substantially affect the photophysiological performance of keyst...
Seaweeds provide important ecosystem services in coastal areas, and loss of these macrophytes due to...
The brown macroalga Fucus vesiculosus is a foundation species in temperate rocky shores, subjected t...
The decline of kelps and algal canopies and the expansion of algal turfs because of global change is...
Shallow coastal marine ecosystems are exposed to intensive warming events in the last decade, threat...
Shallow coastal marine ecosystems are exposed to intensive warming events in the last decade, threat...
Normalised maximum quantum yield (Fv/Fm) for the alga Fucus vesiculosus from the leading (Greenland,...
Warming and acidification of the oceans as a consequence of increasing CO2-concentrations occur at l...
© 2015 New Phytologist Trust. Macroalgae live in an ever-changing light environment affected by wave...
© 2016 Baker, Robinson, Radford, McInnes, Evenhuis and Doblin. How the functional traits (FTs) of ph...
Respiration of ectotherms is predicted to increase faster with rising environmental temperature than...
Respiration of ectotherms is predicted to increase faster with rising environmental temperature than...
Temperature is one of the environmental factors that most strongly influence the life of microalgae,...
<p>Microphytobenthos and turf algae were incubated to determine oxygen fluxes (net photosynthesis an...