Increasing atmospheric CO2 concentration affects calcification in most planktonic calcifiers. Both reduced or stimulated calcification under high CO2 have been reported in the widespread coccolithophore Emiliania huxleyi. This might affect the response of cells to photosynthetically active radiation (PAR; 400-700 nm) and ultraviolet radiation (UVR; 280-400 nm) by altering the thickness of the coccolith layer. Here we show that in the absence of UVR, the calcification rates in E. huxleyi decrease under lowered pH levels (pHNBS of 7.9 and 7.6; pCO2 of 81 and 178 Pa or 804 and 1759 ppmv, respectively) leading to thinned coccolith layers, whereas photosynthetic carbon fixation was slightly enhanced at pH 7.9 but remained unaffected at pH 7.6. E...
Coccolithophores are important calcifying phytoplankton predicted to be impacted by changes in ocean...
The formation of calcareous skeletons by marine planktonic organisms and their subsequent sinking to...
Precipitation of calcium carbonate by phytoplankton in the photic oceanic layer is an important proc...
Increasing atmospheric CO2 concentration affects calcification in most planktonic calcifiers. Both r...
Increasing atmospheric CO2 concentration affects calcification in most planktonic calcifiers. Both r...
Marine phytoplankton such as bloom-forming, calcite-producing coccolithophores, are naturally expose...
Increasing atmospheric CO2 concentration affects calcification in most planktonic calcifiers. Both r...
Previous studies have shown that increasing atmospheric CO2 concentrations affect calcification in s...
Changes in calcification of coccolithophores may affect their photosynthetic responses to both, ultr...
Photophysiological responses of phytoplankton to changing multiple environmental drivers are essenti...
Mixing of seawater subjects phytoplankton to fluctuations in photosynthetically active radiation (40...
The calcifying phytoplankton species, coccolithophores, have their calcified coccoliths around the c...
While seawater acidification induced by elevated CO2 is known to impact coccolithophores, the effect...
Coccolithophores, a globally distributed group of marine phytoplankton, showed diverse responses to ...
Marine phytoplankton such as bloom-forming, calcite-producing coccolithophores, are naturally expose...
Coccolithophores are important calcifying phytoplankton predicted to be impacted by changes in ocean...
The formation of calcareous skeletons by marine planktonic organisms and their subsequent sinking to...
Precipitation of calcium carbonate by phytoplankton in the photic oceanic layer is an important proc...
Increasing atmospheric CO2 concentration affects calcification in most planktonic calcifiers. Both r...
Increasing atmospheric CO2 concentration affects calcification in most planktonic calcifiers. Both r...
Marine phytoplankton such as bloom-forming, calcite-producing coccolithophores, are naturally expose...
Increasing atmospheric CO2 concentration affects calcification in most planktonic calcifiers. Both r...
Previous studies have shown that increasing atmospheric CO2 concentrations affect calcification in s...
Changes in calcification of coccolithophores may affect their photosynthetic responses to both, ultr...
Photophysiological responses of phytoplankton to changing multiple environmental drivers are essenti...
Mixing of seawater subjects phytoplankton to fluctuations in photosynthetically active radiation (40...
The calcifying phytoplankton species, coccolithophores, have their calcified coccoliths around the c...
While seawater acidification induced by elevated CO2 is known to impact coccolithophores, the effect...
Coccolithophores, a globally distributed group of marine phytoplankton, showed diverse responses to ...
Marine phytoplankton such as bloom-forming, calcite-producing coccolithophores, are naturally expose...
Coccolithophores are important calcifying phytoplankton predicted to be impacted by changes in ocean...
The formation of calcareous skeletons by marine planktonic organisms and their subsequent sinking to...
Precipitation of calcium carbonate by phytoplankton in the photic oceanic layer is an important proc...