<div><p>Ocean acidification due to rising atmospheric CO<sub>2</sub> is expected to affect the physiology of important calcifying marine organisms, but the nature and magnitude of change is yet to be established. In coccolithophores, different species and strains display varying calcification responses to ocean acidification, but the underlying biochemical properties remain unknown. We employed an approach combining tandem mass-spectrometry with isobaric tagging (iTRAQ) and multiple database searching to identify proteins that were differentially expressed in cells of the marine coccolithophore species <i>Emiliania huxleyi</i> (strain NZEH) between two CO<sub>2</sub> conditions: 395 (∼current day) and ∼1340 p.p.m.v. CO<sub>2</sub>. Cells ex...
About one-third of the carbon dioxide (CO(2)) released into the atmosphere as a result of human acti...
Ocean acidification in response to rising atmospheric CO2 partial pressures is widely expected to re...
The absorption of atmospheric pCO2 by the ocean causes changes in water chemistry,\ud collectively t...
Ocean acidification due to rising atmospheric CO2 is expected to affect the physiology of important ...
Ocean acidification due to rising atmospheric CO2 is expected to affect the physiology of important ...
Ocean acidification due to rising atmospheric CO2 is expected to affect the physiology of important ...
Coccolithophores are important oceanic primary producers not only in terms of photosynthesis but als...
The emergence of ocean acidification as a significant threat to calcifying organisms in marine ecosy...
The emergence of ocean acidification as a significant threat to calcifying organisms in marine ecosy...
The emergence of ocean acidification as a significant threat to calcifying organisms in marine ecosy...
About one-third of the carbon dioxide (CO(2)) released into the atmosphere as a result of human acti...
Recent ocean acidification (OA) studies revealed that seawater [H+] rather than [CO2] or [ inline im...
Coccolithophores are unicellular marine algae that produce biogenic calcite scales and substantially...
Ongoing ocean global change due to anthropogenic activities is causing multiple chemical and physica...
About one-third of the carbon dioxide (CO(2)) released into the atmosphere as a result of human acti...
Ocean acidification in response to rising atmospheric CO2 partial pressures is widely expected to re...
The absorption of atmospheric pCO2 by the ocean causes changes in water chemistry,\ud collectively t...
Ocean acidification due to rising atmospheric CO2 is expected to affect the physiology of important ...
Ocean acidification due to rising atmospheric CO2 is expected to affect the physiology of important ...
Ocean acidification due to rising atmospheric CO2 is expected to affect the physiology of important ...
Coccolithophores are important oceanic primary producers not only in terms of photosynthesis but als...
The emergence of ocean acidification as a significant threat to calcifying organisms in marine ecosy...
The emergence of ocean acidification as a significant threat to calcifying organisms in marine ecosy...
The emergence of ocean acidification as a significant threat to calcifying organisms in marine ecosy...
About one-third of the carbon dioxide (CO(2)) released into the atmosphere as a result of human acti...
Recent ocean acidification (OA) studies revealed that seawater [H+] rather than [CO2] or [ inline im...
Coccolithophores are unicellular marine algae that produce biogenic calcite scales and substantially...
Ongoing ocean global change due to anthropogenic activities is causing multiple chemical and physica...
About one-third of the carbon dioxide (CO(2)) released into the atmosphere as a result of human acti...
Ocean acidification in response to rising atmospheric CO2 partial pressures is widely expected to re...
The absorption of atmospheric pCO2 by the ocean causes changes in water chemistry,\ud collectively t...