Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal assemblages or barren grounds, as a consequence of direct and indirect human impacts (e.g. overfishing) and grazing pressure by herbivorous organisms. In future scenarios of ocean acidification, calcifying organisms are expected to be less competitive: among these two key elements of the rocky subtidal food web, coralline algae and sea urchins. In order to highlight how the effects of increased pCO2 on individual calcifying species will be exacerbated by interactions with other trophic levels, we performed an experiment simultaneously testing ocean acidification effects on primary producers (calcifying and non-calcifying algae) and their grazers ...
The need to understand future changes in marine ecosystems has become critically important as increa...
Anthropogenic CO2 emissions have exacerbated two environmental stressors, global climate warming and...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
International audienceTemperate marine rocky habitats may be alternatively characterized by well veg...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
International audienceTemperate marine rocky habitats may be alternatively characterized by well veg...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Ocean acidification (OA) is likely to differentially affect the biology and physiology of calcifying...
Predicting the impacts of ocean acidification on coastal ecosystems requires an understanding of the...
Predicting the impacts of ocean acidification on coastal ecosystems requires an understanding of the...
Despite the heightened awareness of ocean acidification (OA) effects on marine organisms, few studie...
Continuous anthropogenic CO2 emissions to the atmosphere and uptake by the oceans will cause a reduc...
Despite the heightened awareness of ocean acidification (OA) effects on marine organisms, few studie...
The need to understand future changes in marine ecosystems has become critically important as increa...
The need to understand future changes in marine ecosystems has become critically important as increa...
Anthropogenic CO2 emissions have exacerbated two environmental stressors, global climate warming and...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
International audienceTemperate marine rocky habitats may be alternatively characterized by well veg...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
International audienceTemperate marine rocky habitats may be alternatively characterized by well veg...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Ocean acidification (OA) is likely to differentially affect the biology and physiology of calcifying...
Predicting the impacts of ocean acidification on coastal ecosystems requires an understanding of the...
Predicting the impacts of ocean acidification on coastal ecosystems requires an understanding of the...
Despite the heightened awareness of ocean acidification (OA) effects on marine organisms, few studie...
Continuous anthropogenic CO2 emissions to the atmosphere and uptake by the oceans will cause a reduc...
Despite the heightened awareness of ocean acidification (OA) effects on marine organisms, few studie...
The need to understand future changes in marine ecosystems has become critically important as increa...
The need to understand future changes in marine ecosystems has become critically important as increa...
Anthropogenic CO2 emissions have exacerbated two environmental stressors, global climate warming and...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...