Coccolithophores are a vital part of oceanic phytoplankton assemblages that produce organic matter and calcium carbonate (CaCO3) containing traces of other elements (i.e. Sr and Mg). Their associated carbon export from the euphotic zone to the oceans' interior plays a crucial role in CO2 feedback mechanisms and biogeochemical cycles. The coccolithophore Emiliania huxleyi has been widely studied as a model organism to understand physiological, biogeochemical, and ecological processes in marine sciences. Here, we show the inter-strain variability in physiological and biogeochemical traits in 13 strains of E. huxleyi from various biogeographical provinces obtained from culture collections commonly used in the literature. Our results demonstrat...
International audienceCoccolithophores, a key phytoplankton group, are one of the most studied organ...
International audienceCoccolithophores, a key phytoplankton group, are one of the most studied organ...
Predicting the impacts of environmental change on marine organisms, food webs, and biogeochemical cy...
Coccolithophores are a vital part of oceanic phytoplankton assemblages that produce organic matter a...
Coccolithophores are a vital part of oceanic phytoplankton assemblages that produce organic matter a...
Ten genetically distinct strains of Emiliania huxleyi were taken as environmental samples from wild ...
Coccolithophorid algae, particularly Emiliania huxleyi, are prolific biomineralisers that, under man...
Coccolithophorid algae, particularly Emiliania huxleyi, are prolific biomineralisers that, under man...
The species concept in marine phytoplankton is defined based on genomic, morphological, and function...
Four strains of the coccolithophore E. huxleyi (RCC1212, RCC1216, RCC1238, RCC1256) were grown in di...
Although coccolithophore physiological responses to CO2-induced changes in seawater carbonate chemis...
Although coccolithophore physiological responses to CO2-induced changes in seawater carbonate chemis...
Four strains of the coccolithophore E. huxleyi (RCC1212, RCC1216, RCC1238, RCC1256) were grown in di...
With respect to their sensitivity to ocean acidification, calcifiers such as the coccolithophore Emi...
The coccolithophorid Emiliania huxleyi has long been considered a cosmopolitan species occurring fro...
International audienceCoccolithophores, a key phytoplankton group, are one of the most studied organ...
International audienceCoccolithophores, a key phytoplankton group, are one of the most studied organ...
Predicting the impacts of environmental change on marine organisms, food webs, and biogeochemical cy...
Coccolithophores are a vital part of oceanic phytoplankton assemblages that produce organic matter a...
Coccolithophores are a vital part of oceanic phytoplankton assemblages that produce organic matter a...
Ten genetically distinct strains of Emiliania huxleyi were taken as environmental samples from wild ...
Coccolithophorid algae, particularly Emiliania huxleyi, are prolific biomineralisers that, under man...
Coccolithophorid algae, particularly Emiliania huxleyi, are prolific biomineralisers that, under man...
The species concept in marine phytoplankton is defined based on genomic, morphological, and function...
Four strains of the coccolithophore E. huxleyi (RCC1212, RCC1216, RCC1238, RCC1256) were grown in di...
Although coccolithophore physiological responses to CO2-induced changes in seawater carbonate chemis...
Although coccolithophore physiological responses to CO2-induced changes in seawater carbonate chemis...
Four strains of the coccolithophore E. huxleyi (RCC1212, RCC1216, RCC1238, RCC1256) were grown in di...
With respect to their sensitivity to ocean acidification, calcifiers such as the coccolithophore Emi...
The coccolithophorid Emiliania huxleyi has long been considered a cosmopolitan species occurring fro...
International audienceCoccolithophores, a key phytoplankton group, are one of the most studied organ...
International audienceCoccolithophores, a key phytoplankton group, are one of the most studied organ...
Predicting the impacts of environmental change on marine organisms, food webs, and biogeochemical cy...