Seagrasses commonly display carbon-limited photosynthetic rates. Thus, increases in atmospheric pCO2, and consequentially oceanic CO2(aq) concentrations, may prove beneficial. While addressed in mesocosms, these hypotheses have not been tested in the field with manipulative experimentation. This study examines the effects of in situ CO2(aq) enrichment on the structural and chemical characteristics of the tropical seagrass, Thalassia testudinum. CO2(aq) availability was manipulated for 6 months in clear, open-top chambers within a shallow seagrass meadow in the Florida Keys (USA), reproducing forecasts for the year 2100. Structural characteristics (leaf area, leaf growth, shoot mass, and shoot density) were unresponsive to CO2(aq) enrichment...
Seagrass beds serve as important carbon sinks, and it is thought that increasing the quantity and qu...
Coastal vegetative habitats are known to be highly productive environments with a high ability to ca...
Increased availability of dissolved CO2 in the ocean can enhance the productivity and growth of mari...
Future increases in oceanic carbon dioxide concentrations (CO2(aq)) may provide a benefit to submerg...
Increasing atmospheric CO2 concentrations associated with climate change will likely influence a wid...
Increasing atmospheric CO2 concentrations associated with climate change will likely influence a wid...
Increased atmospheric carbon dioxide leads to ocean acidification and carbon dioxide (CO₂) enrichmen...
Increasing atmospheric CO2 concentrations associated with climate change will likely influence a wid...
Increasing atmospheric CO2 concentrations associated with climate change will likely influence a wid...
Increasing atmospheric CO2 concentrations associated with climate change will likely influence a wid...
Increased atmospheric carbon dioxide leads to ocean acidification and carbon dioxide (CO₂) enrichmen...
Ocean acidification is one of the biggest challenges happening in the marine environment and causes ...
Seagrass ecosystems are expected to benefit from the global increase in CO2 in the ocean because the...
Seagrass ecosystems are expected to benefit from the global increase in CO2 in the ocean because the...
Seagrass is expected to benefit from increased carbon availability under future ocean acidification....
Seagrass beds serve as important carbon sinks, and it is thought that increasing the quantity and qu...
Coastal vegetative habitats are known to be highly productive environments with a high ability to ca...
Increased availability of dissolved CO2 in the ocean can enhance the productivity and growth of mari...
Future increases in oceanic carbon dioxide concentrations (CO2(aq)) may provide a benefit to submerg...
Increasing atmospheric CO2 concentrations associated with climate change will likely influence a wid...
Increasing atmospheric CO2 concentrations associated with climate change will likely influence a wid...
Increased atmospheric carbon dioxide leads to ocean acidification and carbon dioxide (CO₂) enrichmen...
Increasing atmospheric CO2 concentrations associated with climate change will likely influence a wid...
Increasing atmospheric CO2 concentrations associated with climate change will likely influence a wid...
Increasing atmospheric CO2 concentrations associated with climate change will likely influence a wid...
Increased atmospheric carbon dioxide leads to ocean acidification and carbon dioxide (CO₂) enrichmen...
Ocean acidification is one of the biggest challenges happening in the marine environment and causes ...
Seagrass ecosystems are expected to benefit from the global increase in CO2 in the ocean because the...
Seagrass ecosystems are expected to benefit from the global increase in CO2 in the ocean because the...
Seagrass is expected to benefit from increased carbon availability under future ocean acidification....
Seagrass beds serve as important carbon sinks, and it is thought that increasing the quantity and qu...
Coastal vegetative habitats are known to be highly productive environments with a high ability to ca...
Increased availability of dissolved CO2 in the ocean can enhance the productivity and growth of mari...