Physiological responses to temperature are known to be a major determinant of species distributions and can dictate the sensitivity of populations to global warming. In contrast, little is known about how other major global change drivers, such as ocean acidification (OA), will shape species distributions in the future. Here, by integrating population genetics with experimental data for growth and mineralization, physiology and metabolomics, we demonstrate that the sensitivity of populations of the gastropod Littorina littorea to future OA is shaped by regional adaptation. Individuals from populations towards the edges of the natural latitudinal range in the Northeast Atlantic exhibit greater shell dissolution and the inability to upregulat...
Ocean acidification (OA) represents a serious challenge to marine ecosystems. Laboratory studies add...
The atlantid heteropods represent the only predatory, aragonite shelled zooplankton. Atlantid shell ...
Anthropogenic carbon emissions are predicted to alter marine ecosystems. One such change is the decl...
Physiological responses to temperature are known to be a major determinant of species distributions ...
Future changes to the pH and temperature of the oceans are predicted to impact the biodiversity of m...
Ocean acidification is predicted to have detrimental effects on many marine organisms and ecological...
Ocean warming is predicted to challenge the persistence of a variety of marine organisms, especially...
International audienceGlobal climate change has intensified the need to assess the capacity for natu...
Embryonic and larval stages are thought to be more sensitive to environmental fluctuations than late...
Rising atmospheric CO2 reduces seawater pH causing ocean acidification (OA). Understanding how resil...
Rising atmospheric CO2 reduces seawater pH causing ocean acidification (OA). Understanding how resil...
Studies on the impact of ocean acidification on marine organisms involve exposing organisms to futur...
Ocean acidification represents a threat to marine species worldwide, and forecasting the ecological ...
Global climate change has intensified the need to assess the capacity for natural populations to ada...
Ocean acidification represents a threat to marine species worldwide, and forecasting the ecological ...
Ocean acidification (OA) represents a serious challenge to marine ecosystems. Laboratory studies add...
The atlantid heteropods represent the only predatory, aragonite shelled zooplankton. Atlantid shell ...
Anthropogenic carbon emissions are predicted to alter marine ecosystems. One such change is the decl...
Physiological responses to temperature are known to be a major determinant of species distributions ...
Future changes to the pH and temperature of the oceans are predicted to impact the biodiversity of m...
Ocean acidification is predicted to have detrimental effects on many marine organisms and ecological...
Ocean warming is predicted to challenge the persistence of a variety of marine organisms, especially...
International audienceGlobal climate change has intensified the need to assess the capacity for natu...
Embryonic and larval stages are thought to be more sensitive to environmental fluctuations than late...
Rising atmospheric CO2 reduces seawater pH causing ocean acidification (OA). Understanding how resil...
Rising atmospheric CO2 reduces seawater pH causing ocean acidification (OA). Understanding how resil...
Studies on the impact of ocean acidification on marine organisms involve exposing organisms to futur...
Ocean acidification represents a threat to marine species worldwide, and forecasting the ecological ...
Global climate change has intensified the need to assess the capacity for natural populations to ada...
Ocean acidification represents a threat to marine species worldwide, and forecasting the ecological ...
Ocean acidification (OA) represents a serious challenge to marine ecosystems. Laboratory studies add...
The atlantid heteropods represent the only predatory, aragonite shelled zooplankton. Atlantid shell ...
Anthropogenic carbon emissions are predicted to alter marine ecosystems. One such change is the decl...