Rising atmospheric CO2 concentrations will significantly reduce ocean pH during the 21st century (ocean acidification, OA). This may hamper calcification in marine organisms such as corals and echinoderms, as shown in many laboratory-based experiments. Sea urchins are considered highly vulnerable to OA. We studied an Echinometra species on natural volcanic CO2 vents in Papua New Guinea, where they are CO2-acclimatized and also subjected to secondary ecological changes from elevated CO2. Near the vent site, the urchins experienced large daily variations in pH (> 1 unit) and pCO2 (> 2000 ppm) and average pH values (pHT 7.73) much below those expected under the most pessimistic future emission scenarios. Growth was measured over a 17-month per...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Phenotypic plasticity is expected to play a major adaptive role in the response of species to ocean ...
Predicting the impacts of ocean acidification on coastal ecosystems requires an understanding of the...
Ocean acidification is forecast to drive a decline in populations of calcifying species, including s...
Atmospheric carbon dioxide (pCO2) has risen from approximately 280 to 400 ppm since the Industrial R...
Ocean acidification results from an increase in the concentrations of atmospheric carbon dioxide (CO...
Recent research on the impact of ocean acidification (OA) has highlighted that it is important to co...
Due to their low metabolism and apparent poor ion regulation ability, sea urchins could be particula...
Anthropogenic CO2 emission will lead to an increase in seawater pCO2 of up to 80-100 Pa (800-1000 µa...
Due to their low metabolism and apparent poor ion regulation ability, sea urchins could be particula...
Anthropogenic carbon dioxide (CO2) emissions are increasing the atmospheric CO2 concentration and th...
Most studies assessing the impactsofocean acidification (OA) onbenthic marine invertebrates have use...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
The atmospheric partial pressure of carbon dioxide (pCO2) will almost certainly be double that of pr...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Phenotypic plasticity is expected to play a major adaptive role in the response of species to ocean ...
Predicting the impacts of ocean acidification on coastal ecosystems requires an understanding of the...
Ocean acidification is forecast to drive a decline in populations of calcifying species, including s...
Atmospheric carbon dioxide (pCO2) has risen from approximately 280 to 400 ppm since the Industrial R...
Ocean acidification results from an increase in the concentrations of atmospheric carbon dioxide (CO...
Recent research on the impact of ocean acidification (OA) has highlighted that it is important to co...
Due to their low metabolism and apparent poor ion regulation ability, sea urchins could be particula...
Anthropogenic CO2 emission will lead to an increase in seawater pCO2 of up to 80-100 Pa (800-1000 µa...
Due to their low metabolism and apparent poor ion regulation ability, sea urchins could be particula...
Anthropogenic carbon dioxide (CO2) emissions are increasing the atmospheric CO2 concentration and th...
Most studies assessing the impactsofocean acidification (OA) onbenthic marine invertebrates have use...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
The atmospheric partial pressure of carbon dioxide (pCO2) will almost certainly be double that of pr...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Phenotypic plasticity is expected to play a major adaptive role in the response of species to ocean ...
Predicting the impacts of ocean acidification on coastal ecosystems requires an understanding of the...