Corallinales (Rhodophyta) are high Mg-calcite macroalgae and are considered among the most vulnerable organisms to ocean acidification (OA). These sensitive species play fundamental roles in coastal systems as food source and settlement promoters as well as being involved in reef stabilization, and water carbonate balance. At present only a few studies are focused on erect calcifying macroalgae under low pH/high pCO2 and the contrasting results make difficult to predict the ecological consequences of the OA on the coralline algae. In this paper the physiological reasons behind the resistance of Jania rubens, one of the most common calcareous species, to changing ocean pH are analysed. In particular, we studied the photosynthetic and mineral...
Atmospheric carbon dioxide emissions cause a decrease in the pH and aragonite saturation state of su...
International audienceOcean acidification is perceived to be a major threat for many calcifying orga...
Coralline algae are considered among the most sensitive species to near future ocean acidification. ...
Corallinales (Rhodophyta) are high Mg-calcite macroalgae and are considered among the most vulnerabl...
Coralline algae (Rhodophyta) play a key role in promoting settlement of other benthic organisms, bei...
Coralline algae (Rhodophyta) play a key role in promoting settlement of other benthic organisms, bei...
Marine organisms inhabiting environments where pCO2/pH varies naturally are suggested to be relative...
Coralline algae are major calcifiers of significant ecological importance in marine habitats but are...
Since the Industrial Revolution, the partial pressure of carbon dioxide (pCO2) has been increasing a...
To understand the effects of ocean acidification (OA) on marine calcifiers, the trade-offs among dif...
Ocean acidification is perceived to be a major threat for many calcifying organisms, including scler...
Coralline algae are major calcifiers of significant ecological importance in marine habitats but are...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Includes bibliographical references (p. 36-42).Future levels of atmospheric carbon dioxide, currentl...
To understand the effects of ocean acidification (OA) on marine calcifiers, the trade-offs among dif...
Atmospheric carbon dioxide emissions cause a decrease in the pH and aragonite saturation state of su...
International audienceOcean acidification is perceived to be a major threat for many calcifying orga...
Coralline algae are considered among the most sensitive species to near future ocean acidification. ...
Corallinales (Rhodophyta) are high Mg-calcite macroalgae and are considered among the most vulnerabl...
Coralline algae (Rhodophyta) play a key role in promoting settlement of other benthic organisms, bei...
Coralline algae (Rhodophyta) play a key role in promoting settlement of other benthic organisms, bei...
Marine organisms inhabiting environments where pCO2/pH varies naturally are suggested to be relative...
Coralline algae are major calcifiers of significant ecological importance in marine habitats but are...
Since the Industrial Revolution, the partial pressure of carbon dioxide (pCO2) has been increasing a...
To understand the effects of ocean acidification (OA) on marine calcifiers, the trade-offs among dif...
Ocean acidification is perceived to be a major threat for many calcifying organisms, including scler...
Coralline algae are major calcifiers of significant ecological importance in marine habitats but are...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Includes bibliographical references (p. 36-42).Future levels of atmospheric carbon dioxide, currentl...
To understand the effects of ocean acidification (OA) on marine calcifiers, the trade-offs among dif...
Atmospheric carbon dioxide emissions cause a decrease in the pH and aragonite saturation state of su...
International audienceOcean acidification is perceived to be a major threat for many calcifying orga...
Coralline algae are considered among the most sensitive species to near future ocean acidification. ...