Ocean acidification caused by an increase in pCO2 is expected to drastically affect marine ecosystem composition, yet there is much uncertainty about the mechanisms through which ecosystems may be affected. Here we studied sea urchins that are common and important grazers in the Mediterranean (Paracentrotus lividus and Arbacia lixula). Our study included a natural CO2 seep plus reference sites in the Aegean Sea off Greece. The distribution of A. lixula was unaffected by the low pH environment, whereas densities of P. lividus were much reduced. There was skeletal degradation in both species living in acidified waters compared to reference sites and remarkable increases in skeletal manganese levels (P. lividus had a 541% increase, A. lixula a...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
© 2018 Elsevier Ltd The marine organisms which inhabit the coastline are exposed to a number of anth...
Atmospheric carbon dioxide (pCO2) has risen from approximately 280 to 400 ppm since the Industrial R...
Ocean acidification caused by an increase in pCO2 is expected to drastically affect marine ecosystem...
Ocean acidification results from an increase in the concentrations of atmospheric carbon dioxide (CO...
Anthropogenic carbon dioxide (CO2) emissions are increasing the atmospheric CO2 concentration and th...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Most studies assessing the impactsofocean acidification (OA) onbenthic marine invertebrates have use...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
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...
Continuous anthropogenic CO2 emissions to the atmosphere and uptake by the oceans will cause a reduc...
Anthropogenic CO2 emission will lead to an increase in seawater pCO2 of up to 80-100 Pa (800-1000 µa...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
© 2018 Elsevier Ltd The marine organisms which inhabit the coastline are exposed to a number of anth...
Atmospheric carbon dioxide (pCO2) has risen from approximately 280 to 400 ppm since the Industrial R...
Ocean acidification caused by an increase in pCO2 is expected to drastically affect marine ecosystem...
Ocean acidification results from an increase in the concentrations of atmospheric carbon dioxide (CO...
Anthropogenic carbon dioxide (CO2) emissions are increasing the atmospheric CO2 concentration and th...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Most studies assessing the impactsofocean acidification (OA) onbenthic marine invertebrates have use...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
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...
Continuous anthropogenic CO2 emissions to the atmosphere and uptake by the oceans will cause a reduc...
Anthropogenic CO2 emission will lead to an increase in seawater pCO2 of up to 80-100 Pa (800-1000 µa...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
© 2018 Elsevier Ltd The marine organisms which inhabit the coastline are exposed to a number of anth...
Atmospheric carbon dioxide (pCO2) has risen from approximately 280 to 400 ppm since the Industrial R...