The impact of the chemical changes in the ocean waters due to the increasing atmospheric CO2 depends on the ability of an organism to control extracellular pH. Among sea urchins, this seems specific to the Euechinoidea, sea urchins except Cidaroidea. However, Cidaroidea survived two ocean acidification periods: the Permian-Trias and the Cretaceous-Tertiary crises. We investigated the response of these two sea urchin groups to reduced seawater pH with the tropical cidaroid Eucidaris tribuloides, the sympatric euechinoid Tripneustes ventricosus and the temperate euechinoid Paracentrotus lividus. Both euechinoid showed a compensation of the coelomic fluid pH due to increased buffer capacity. This was linked to an increased concentration of DIC...
Due to their low metabolism and apparent poor ion regulation ability, sea urchins could be particula...
Atmospheric carbon dioxide levels have recently surpassed 400 ppm, a substantial increase since the ...
The intertidal, purple tipped sea urchin {Psammechinus miliaris) was exposed to artificially acidifi...
The impact of the chemical changes in the ocean waters due to the increasing atmospheric CO2 depends...
Even though previous researches have been led on the acid-base balance of the coelomic fluid of sea ...
Increasing atmospheric carbon dioxide concentration alters the chemistry of the oceans towards more ...
Increasing atmospheric carbon dioxide concentration alters the chemistry of the oceans towards more ...
The increase in atmospheric CO2 due to anthropogenic activity results in an acidification of the sur...
Anthropogenic carbon dioxide (CO2) emissions are increasing the atmospheric CO2 concentration and th...
The increase in atmospheric CO2 due to anthropogenic activity results in an acidification of the sur...
Most studies assessing the impactsofocean acidification (OA) onbenthic marine invertebrates have use...
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...
Larval stages of members of the Abulacraria superphylum including echinoderms and hemichordates have...
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...
Atmospheric carbon dioxide levels have recently surpassed 400 ppm, a substantial increase since the ...
The intertidal, purple tipped sea urchin {Psammechinus miliaris) was exposed to artificially acidifi...
The impact of the chemical changes in the ocean waters due to the increasing atmospheric CO2 depends...
Even though previous researches have been led on the acid-base balance of the coelomic fluid of sea ...
Increasing atmospheric carbon dioxide concentration alters the chemistry of the oceans towards more ...
Increasing atmospheric carbon dioxide concentration alters the chemistry of the oceans towards more ...
The increase in atmospheric CO2 due to anthropogenic activity results in an acidification of the sur...
Anthropogenic carbon dioxide (CO2) emissions are increasing the atmospheric CO2 concentration and th...
The increase in atmospheric CO2 due to anthropogenic activity results in an acidification of the sur...
Most studies assessing the impactsofocean acidification (OA) onbenthic marine invertebrates have use...
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...
Larval stages of members of the Abulacraria superphylum including echinoderms and hemichordates have...
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...
Atmospheric carbon dioxide levels have recently surpassed 400 ppm, a substantial increase since the ...
The intertidal, purple tipped sea urchin {Psammechinus miliaris) was exposed to artificially acidifi...