Despite the heightened awareness of ocean acidification (OA) effects on marine organisms, few studies empirically juxtapose biological responses to CO2 manipulations across functionally distinct primary producers, particularly benthic algae. Algal responses to OA may vary because increasing CO2 has the potential to fertilize photosynthesis but impair biomineralization. Using a series of repeated experiments on Palmyra Atoll, simulated OA effects were tested across a suite of ecologically important coral reef algae, including five fleshy and six calcareous species. Growth, calcification and photophysiology were measured for each species independently and metrics were combined from each experiment using a meta-analysis to examine overall tren...
Predicting the impacts of ocean acidification on coastal ecosystems requires an understanding of the...
Anthropogenic CO2 emissions have exacerbated two environmental stressors, global climate warming and...
Owing to anthropogenic emissions, atmospheric concentrations of carbon dioxide could almost double b...
Despite the heightened awareness of ocean acidification (OA) effects on marine organisms, few studie...
Macroalgae can modify coral reef community structure and ecosystem function through a variety of mec...
Ocean acidification (OA), resulting from increasing dissolved carbon dioxide (CO2) in surface waters...
The sustained absorption of anthropogenically released atmospheric CO2 by the oceans is modifying se...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Includes bibliographical references (p. 36-42).Future levels of atmospheric carbon dioxide, currentl...
Calcification and growth of crustose coralline algae (CCA) are affected by elevated seawater pCO2 an...
The acid-base relations of plant (including algal) environments are complex, comprising geological p...
Ocean acidification represents a key threat to coral reefs by reducing the calcification rate of fra...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Ocean acidification is the lowering of oceanic pH that has resulted from the increase of CO2 in the ...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Predicting the impacts of ocean acidification on coastal ecosystems requires an understanding of the...
Anthropogenic CO2 emissions have exacerbated two environmental stressors, global climate warming and...
Owing to anthropogenic emissions, atmospheric concentrations of carbon dioxide could almost double b...
Despite the heightened awareness of ocean acidification (OA) effects on marine organisms, few studie...
Macroalgae can modify coral reef community structure and ecosystem function through a variety of mec...
Ocean acidification (OA), resulting from increasing dissolved carbon dioxide (CO2) in surface waters...
The sustained absorption of anthropogenically released atmospheric CO2 by the oceans is modifying se...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Includes bibliographical references (p. 36-42).Future levels of atmospheric carbon dioxide, currentl...
Calcification and growth of crustose coralline algae (CCA) are affected by elevated seawater pCO2 an...
The acid-base relations of plant (including algal) environments are complex, comprising geological p...
Ocean acidification represents a key threat to coral reefs by reducing the calcification rate of fra...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Ocean acidification is the lowering of oceanic pH that has resulted from the increase of CO2 in the ...
Temperate marine rocky habitats may be alternatively characterized by well vegetated macroalgal asse...
Predicting the impacts of ocean acidification on coastal ecosystems requires an understanding of the...
Anthropogenic CO2 emissions have exacerbated two environmental stressors, global climate warming and...
Owing to anthropogenic emissions, atmospheric concentrations of carbon dioxide could almost double b...