Cell division of the coccolithophore Emiliania huxleyi and other phytoplankton typically becomes entrained to diel light/dark cycles under laboratory conditions, with division occurring primarily during dark phases and production occurring during light phases. Under these conditions, the increase in a culture's cell and biomass concentrations deviates from an exponential function on time scales < 24 h. We here present a dataset of short-term changes in cell and biomass concentrations of fast dividing, dilute-batch cultures of E. huxleyi grown under a 16:8 h light/dark cycle. This dataset was used to derive linear models describing the diel course in the concentrations of cells, particulate organic carbon (POC) and particulate inorganic carb...
International audienceCoccolithophores, a key phytoplankton group, are one of the most studied organ...
The response of the coccolithophore Emiliania huxleyi to rising CO2 concentrations is well documente...
Two experiments have been conducted to study the effects of various carbonate system parameters on g...
Cell division of the coccolithophore Emiliania huxleyi and other phytoplankton typically becomes ent...
Cell division of the coccolithophore Emiliania huxleyi and other phytoplankton typically becomes ent...
AbstractCoccolithophores play an important role in the marine carbon cycle. Variations in light inte...
A dynamic model has been developed to represent biogeochemical variables and processes observed duri...
Primary production in the sunlit surface ocean is the driving force for the uptake of atmospheric CO...
The effects of ocean acidification on the life-cycle stages of the coccolithophore Emiliania huxleyi...
International audienceA dynamic model has been developed to represent biogeochemical variables and p...
The composition of bacterial and phytoplankton communities during phytoplankton blooms, and their in...
Phytoplankton in the upper oceans are exposed to changing light levels due to mixing, diurnal solar ...
International audienceCoccolithophores are sensitive recorders of environmental change. The size of ...
International audienceCoccolithophores, a key phytoplankton group, are one of the most studied organ...
The response of the coccolithophore Emiliania huxleyi to rising CO2 concentrations is well documente...
Two experiments have been conducted to study the effects of various carbonate system parameters on g...
Cell division of the coccolithophore Emiliania huxleyi and other phytoplankton typically becomes ent...
Cell division of the coccolithophore Emiliania huxleyi and other phytoplankton typically becomes ent...
AbstractCoccolithophores play an important role in the marine carbon cycle. Variations in light inte...
A dynamic model has been developed to represent biogeochemical variables and processes observed duri...
Primary production in the sunlit surface ocean is the driving force for the uptake of atmospheric CO...
The effects of ocean acidification on the life-cycle stages of the coccolithophore Emiliania huxleyi...
International audienceA dynamic model has been developed to represent biogeochemical variables and p...
The composition of bacterial and phytoplankton communities during phytoplankton blooms, and their in...
Phytoplankton in the upper oceans are exposed to changing light levels due to mixing, diurnal solar ...
International audienceCoccolithophores are sensitive recorders of environmental change. The size of ...
International audienceCoccolithophores, a key phytoplankton group, are one of the most studied organ...
The response of the coccolithophore Emiliania huxleyi to rising CO2 concentrations is well documente...
Two experiments have been conducted to study the effects of various carbonate system parameters on g...