We conducted a 93-day experiment investigating the independent and combined effects of acidification (28023300 matm pCO2) and warming (288C and 318C) on calcification and linear extension rates of four key Caribbean coral species (Siderastrea siderea, Pseudodiploria strigosa, Porites astreoides, Undaria tenuifolia) from inshore and offshore reefs on the Belize Mesoamerican Barrier Reef System. All species exhibited nonlinear declines in calcification rate with increasing pCO2.Warming only reduced calcification in Ps. strigosa. Of the species tested, only S. siderea maintained positive calcification in the aragonite-undersaturated treatment. Temperature and pCO2 had no effect on the linear extension of S. siderea and Po. astreoides, and nata...
Climate change is the greatest threat to coral reef ecosystems. Importantly, gradual changes in seaw...
Coral reefs are one of the most economically important ecosystems on the planet. Despite their great...
Ocean acidification is predicted to impact ecosystems reliant on calcifying organisms, potentially re...
Anthropogenic increases in atmospheric CO2 over this century are predicted to cause global average s...
Global change driven by anthropogenic carbon emissions is altering ecosystems at unprecedented rates...
Atmospheric pCO2 is predicted to rise from 400 to 900 ppm by year 2100, causing seawater temperature...
Global change, including rising temperatures and acidification, threatens corals globally. Although ...
Global change driven by anthropogenic carbon emissions is altering ecosystems at unprecedented rates...
Corals are globally important calcifiers that exhibit complex responses to anthropogenic warming and...
Anthropogenic increases in atmospheric carbon dioxide (CO2) are predicted to cause sea surface tempe...
Ocean acidification is well-researched with respect to adult scleractinian corals, however informati...
While research on ocean acidification (OA) impacts on coral reefs has focused on calcification, rela...
Global change, including rising temperatures and acidification, threatens corals globally. Although ...
Increased atmospheric pCO2 is expected to reduce coral calcification through increased temperatures ...
© Author(s) 2015. Coral reefs are diverse ecosystems that are threatened by rising CO2 levels throug...
Climate change is the greatest threat to coral reef ecosystems. Importantly, gradual changes in seaw...
Coral reefs are one of the most economically important ecosystems on the planet. Despite their great...
Ocean acidification is predicted to impact ecosystems reliant on calcifying organisms, potentially re...
Anthropogenic increases in atmospheric CO2 over this century are predicted to cause global average s...
Global change driven by anthropogenic carbon emissions is altering ecosystems at unprecedented rates...
Atmospheric pCO2 is predicted to rise from 400 to 900 ppm by year 2100, causing seawater temperature...
Global change, including rising temperatures and acidification, threatens corals globally. Although ...
Global change driven by anthropogenic carbon emissions is altering ecosystems at unprecedented rates...
Corals are globally important calcifiers that exhibit complex responses to anthropogenic warming and...
Anthropogenic increases in atmospheric carbon dioxide (CO2) are predicted to cause sea surface tempe...
Ocean acidification is well-researched with respect to adult scleractinian corals, however informati...
While research on ocean acidification (OA) impacts on coral reefs has focused on calcification, rela...
Global change, including rising temperatures and acidification, threatens corals globally. Although ...
Increased atmospheric pCO2 is expected to reduce coral calcification through increased temperatures ...
© Author(s) 2015. Coral reefs are diverse ecosystems that are threatened by rising CO2 levels throug...
Climate change is the greatest threat to coral reef ecosystems. Importantly, gradual changes in seaw...
Coral reefs are one of the most economically important ecosystems on the planet. Despite their great...
Ocean acidification is predicted to impact ecosystems reliant on calcifying organisms, potentially re...