Predicting the effects of anthropogenic CO2 emissions on coastal ecosystems requires an understanding of the responses of algae, since these are a vital functional component of shallow-water habitats. We investigated microphytobenthic assemblages on rock and sandy habitats along a shallow subtidal pCO2 gradient near volcanic seeps in the Mediterranean Sea. Field studies of natural pCO2 gradients help us understand the likely effects of ocean acidification because entire communities are subjected to a realistic suite of environmental stressors such as over-fishing and coastal pollution. Temperature, total alkalinity, salinity, light levels and sediment properties were similar at our study sites. On sand and on rock, benthic diatom abundance ...
Beneficial effects of CO2 on photosynthetic organisms will be a key driver of ecosystem change under...
Beneficial effects of CO2 on photosynthetic organisms will be a key driver of ecosystem change under...
Beneficial effects of CO2 on photosynthetic organisms will be a key driver of ecosystem change under...
Predicting the effects of anthropogenic CO2 emissions on coastal ecosystems requires an understandin...
Predicting the effects of anthropogenic CO2 emissions on coastal ecosystems requires an understandin...
Increasing anthropogenic CO2 emissions to the atmosphere are causing a rise in pCO2 concentrations i...
Increasing anthropogenic CO2 emissions to the atmosphere are causing a rise in pCO2 concentrations i...
Increasing anthropogenic CO2 emissions to the atmosphere are causing a rise in pCO2 concentrations i...
Ocean acidification is expected to alter marine systems, but there is uncertainty about its effects ...
Natural CO2 venting systems can mimic conditions that resemble intermediate to high pCO2 levels as p...
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Abstract Increasing anthropogenic CO2 emissions to the atmosphere are causing a rise in pCO2 concent...
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Natural CO2 venting systems can mimic conditions that resemble intermediate to high pCO2 levels as p...
Beneficial effects of CO2 on photosynthetic organisms will be a key driver of ecosystem change under...
Beneficial effects of CO2 on photosynthetic organisms will be a key driver of ecosystem change under...
Beneficial effects of CO2 on photosynthetic organisms will be a key driver of ecosystem change under...
Beneficial effects of CO2 on photosynthetic organisms will be a key driver of ecosystem change under...
Predicting the effects of anthropogenic CO2 emissions on coastal ecosystems requires an understandin...
Predicting the effects of anthropogenic CO2 emissions on coastal ecosystems requires an understandin...
Increasing anthropogenic CO2 emissions to the atmosphere are causing a rise in pCO2 concentrations i...
Increasing anthropogenic CO2 emissions to the atmosphere are causing a rise in pCO2 concentrations i...
Increasing anthropogenic CO2 emissions to the atmosphere are causing a rise in pCO2 concentrations i...
Ocean acidification is expected to alter marine systems, but there is uncertainty about its effects ...
Natural CO2 venting systems can mimic conditions that resemble intermediate to high pCO2 levels as p...
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Abstract Increasing anthropogenic CO2 emissions to the atmosphere are causing a rise in pCO2 concent...
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Natural CO2 venting systems can mimic conditions that resemble intermediate to high pCO2 levels as p...
Beneficial effects of CO2 on photosynthetic organisms will be a key driver of ecosystem change under...
Beneficial effects of CO2 on photosynthetic organisms will be a key driver of ecosystem change under...
Beneficial effects of CO2 on photosynthetic organisms will be a key driver of ecosystem change under...
Beneficial effects of CO2 on photosynthetic organisms will be a key driver of ecosystem change under...