Increasing oceanic uptake of CO₂ is predicted to drive ecological change as both a resource (i.e. CO₂ enrichment on primary producers) and stressor (i.e. lower pH on consumers). We use the natural ecological complexity of a CO₂ vent (i.e. a seagrass system) to assess the potential validity of conceptual models developed from laboratory and mesocosm research. Our observations suggest that the stressor-effect of CO₂ enrichment combined with its resource-effect drives simplified food web structure of lower trophic diversity and shorter length. The transfer of CO₂ enrichment from plants to herbivores through consumption (apparent resource-effect) was not compensated by predation, because carnivores failed to contain herbivore outbreaks. Instead...
I am investigating areas of the seabed that are already acidified by carbon dioxide, so that we can ...
Anthropogenic stressors are predicted to alter biodiversity and ecosystem functioning worldwide. How...
The unprecedented rate of CO2 increase in our atmosphere and subsequent ocean acidification (OA) thr...
Increasing oceanic uptake of CO2 is predicted to drive ecological change as both a resource (i.e. CO...
Ecologically dominant species often define ecosystem states, but as human disturbances intensify, th...
Ocean acidification is expected to alter a wide range of marine systems, but there is great uncertai...
Available online 27 March 2017The response of complex ecological communities to ocean acidification ...
Rising anthropogenic CO₂ emissions are anticipated to drive change to ocean ecosystems, but a concep...
Future climate is forecast to drive bottom-up (resource driven) and top-down (consumer driven) chang...
Experiments have shown that increasing dissolved CO2 concentrations (i.e. Ocean Acidification, OA) i...
Ocean acidification, chemical changes to the carbonate system of seawater, is emerging as a key envi...
Ocean acidification, chemical changes to the carbonate system of seawater, is emerging as a key envi...
Consumer-resource interactions play an important role in determining the structure and function of e...
Predictions concerning the consequences of the oceanic uptake of increasing atmospheric carbon dioxi...
Rising atmospheric concentrations of carbon dioxide are causing surface seawater pH and carbonate io...
I am investigating areas of the seabed that are already acidified by carbon dioxide, so that we can ...
Anthropogenic stressors are predicted to alter biodiversity and ecosystem functioning worldwide. How...
The unprecedented rate of CO2 increase in our atmosphere and subsequent ocean acidification (OA) thr...
Increasing oceanic uptake of CO2 is predicted to drive ecological change as both a resource (i.e. CO...
Ecologically dominant species often define ecosystem states, but as human disturbances intensify, th...
Ocean acidification is expected to alter a wide range of marine systems, but there is great uncertai...
Available online 27 March 2017The response of complex ecological communities to ocean acidification ...
Rising anthropogenic CO₂ emissions are anticipated to drive change to ocean ecosystems, but a concep...
Future climate is forecast to drive bottom-up (resource driven) and top-down (consumer driven) chang...
Experiments have shown that increasing dissolved CO2 concentrations (i.e. Ocean Acidification, OA) i...
Ocean acidification, chemical changes to the carbonate system of seawater, is emerging as a key envi...
Ocean acidification, chemical changes to the carbonate system of seawater, is emerging as a key envi...
Consumer-resource interactions play an important role in determining the structure and function of e...
Predictions concerning the consequences of the oceanic uptake of increasing atmospheric carbon dioxi...
Rising atmospheric concentrations of carbon dioxide are causing surface seawater pH and carbonate io...
I am investigating areas of the seabed that are already acidified by carbon dioxide, so that we can ...
Anthropogenic stressors are predicted to alter biodiversity and ecosystem functioning worldwide. How...
The unprecedented rate of CO2 increase in our atmosphere and subsequent ocean acidification (OA) thr...