Ocean acidification is thought to benefit seagrasses because of increased carbon dioxide (CO2) availability for photosynthesis. However, in order to truly assess ecological responses, effects of ocean acidification need to be investigated in a variety of coastal environments. We tested the hypothesis that ocean acidification would benefit seagrasses in the northern Gulf of Mexico, where the seagrasses Halodule wrightii and Ruppia maritima coexist in a fluctuating environment. To evaluate if benefits of ocean acidification could alter seagrass bed composition, cores of H. wrightii and R. maritima were placed alone or in combination into aquaria and maintained in an outdoor mesocosm. Half of the aquaria were exposed to either ambient (mean pH...
Rising atmospheric CO2 often triggers the production of plant phenolics, including many that serve a...
Seagrass is expected to benefit from increased carbon availability under future ocean acidification....
Rising atmospheric CO2 often triggers the production of plant phenolics, including many that serve a...
Ocean acidification is one of the biggest challenges happening in the marine environment and causes ...
Primary productivity is the conversion of inorganic carbon into structural and nonstructural carbon ...
Seagrass meadows are one of the most productive ecosystems on the planet, but their photosynthesis r...
The unprecedented rate of CO2 increase in our atmosphere and subsequent ocean acidification (OA) thr...
The unprecedented rate of CO2 increase in our atmosphere and subsequent ocean acidification (OA) thr...
International audienceSeagrass meadows are one of the most productive ecosystems on the planet, but ...
The unprecedented rate of CO2 increase in our atmosphere and subsequent ocean acidification (OA) thr...
International audienceSeagrass meadows are one of the most productive ecosystems on the planet, but ...
International audienceSeagrass meadows are one of the most productive ecosystems on the planet, but ...
Rising atmospheric CO2 often triggers the production of plant phenolics, including many that serve a...
Surface ocean pH is likely to decrease by up to 0.4 units by 2100 due to the uptake of anthropogenic...
Seagrass is expected to benefit from increased carbon availability under future ocean acidification....
Rising atmospheric CO2 often triggers the production of plant phenolics, including many that serve a...
Seagrass is expected to benefit from increased carbon availability under future ocean acidification....
Rising atmospheric CO2 often triggers the production of plant phenolics, including many that serve a...
Ocean acidification is one of the biggest challenges happening in the marine environment and causes ...
Primary productivity is the conversion of inorganic carbon into structural and nonstructural carbon ...
Seagrass meadows are one of the most productive ecosystems on the planet, but their photosynthesis r...
The unprecedented rate of CO2 increase in our atmosphere and subsequent ocean acidification (OA) thr...
The unprecedented rate of CO2 increase in our atmosphere and subsequent ocean acidification (OA) thr...
International audienceSeagrass meadows are one of the most productive ecosystems on the planet, but ...
The unprecedented rate of CO2 increase in our atmosphere and subsequent ocean acidification (OA) thr...
International audienceSeagrass meadows are one of the most productive ecosystems on the planet, but ...
International audienceSeagrass meadows are one of the most productive ecosystems on the planet, but ...
Rising atmospheric CO2 often triggers the production of plant phenolics, including many that serve a...
Surface ocean pH is likely to decrease by up to 0.4 units by 2100 due to the uptake of anthropogenic...
Seagrass is expected to benefit from increased carbon availability under future ocean acidification....
Rising atmospheric CO2 often triggers the production of plant phenolics, including many that serve a...
Seagrass is expected to benefit from increased carbon availability under future ocean acidification....
Rising atmospheric CO2 often triggers the production of plant phenolics, including many that serve a...