Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lowering of pH, referred to as ocean acidification. Understanding how different organisms and processes respond to ocean acidification is vital to predict how marine ecosystems will be altered under future scenarios of continued environmental change. Regenerative processes involving biomineralization in marine calcifiers such as sea urchins are predicted to be especially vulnerable. In this study, the effect of ocean acidification on regeneration of external appendages (spines and tube feet) was investigated in the sea urchin Lytechinus variegatus exposed to ambient (546 µatm), intermediate (1027 µatm) and high (1841 µatm) partial pressure of CO2 ...
Ocean acidification (OA), from seawater uptake of anthropogenic CO2, has a suite of negative effects...
• Arbacia lixula and Paracentrotus lividus were differently affected at low seawater pH exposure. •...
Atmospheric carbon dioxide (pCO2) has risen from approximately 280 to 400 ppm since the Industrial R...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Ocean acidification caused by an increase in pCO2 is expected to drastically affect marine ecosystem...
Raw data for "Ocean acidification impacts spine integrity but not regenerative capacity of spines an...
The current increase in atmospheric CO2 concentration induces changes in the seawater carbonate syst...
13 pagesInternational audienceIncreasing atmospheric carbon dioxide concentration alters the chemist...
Extensive use of fossil fuels is leading to increasing CO2 concentrations in the atmosphere and caus...
Increased atmospheric CO2 concentration is leading to changes in the carbonate chemistry and the tem...
Increasing atmospheric carbon dioxide concentration alters the chemistry of the oceans towards more ...
Ocean warming and ocean acidification, both consequences of anthropogenic production of CO2, will co...
The intertidal, purple tipped sea urchin {Psammechinus miliaris) was exposed to artificially acidifi...
Ocean acidification (OA), from seawater uptake of anthropogenic CO2, has a suite of negative effects...
• Arbacia lixula and Paracentrotus lividus were differently affected at low seawater pH exposure. •...
Atmospheric carbon dioxide (pCO2) has risen from approximately 280 to 400 ppm since the Industrial R...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Ocean acidification caused by an increase in pCO2 is expected to drastically affect marine ecosystem...
Raw data for "Ocean acidification impacts spine integrity but not regenerative capacity of spines an...
The current increase in atmospheric CO2 concentration induces changes in the seawater carbonate syst...
13 pagesInternational audienceIncreasing atmospheric carbon dioxide concentration alters the chemist...
Extensive use of fossil fuels is leading to increasing CO2 concentrations in the atmosphere and caus...
Increased atmospheric CO2 concentration is leading to changes in the carbonate chemistry and the tem...
Increasing atmospheric carbon dioxide concentration alters the chemistry of the oceans towards more ...
Ocean warming and ocean acidification, both consequences of anthropogenic production of CO2, will co...
The intertidal, purple tipped sea urchin {Psammechinus miliaris) was exposed to artificially acidifi...
Ocean acidification (OA), from seawater uptake of anthropogenic CO2, has a suite of negative effects...
• Arbacia lixula and Paracentrotus lividus were differently affected at low seawater pH exposure. •...
Atmospheric carbon dioxide (pCO2) has risen from approximately 280 to 400 ppm since the Industrial R...