Temperature sensitivity of plankton in terms of activation energy (Ea, eV) in the Arrhenius equation is critical for predicting how marine productivity and carbon export will respond to ocean warming. In this study, we quantified the temperature responses of phytoplankton growth rate and microzooplankton grazing rate by conducting short-term temperature modulation experiments on natural communities at two subtropical sites with contrasting nutrient conditions. Our results showed that the activation energy of phytoplankton growth rate (Ea = 0.36 eV, 95% confidence interval [CI] = 0.28–0.44 eV) at each station was less than that of microzooplankton grazing rate (Ea = 0.53 eV, 95% CI = 0.47–0.59 eV), indicating an increasing grazing pressure o...
Marine phytoplankton generate half of global primary production, making them essential to ecosystem ...
Picophytoplankton account for most of the marine (sub-)tropical phytoplankton biomass and primary pr...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
Temperature sensitivity of plankton in terms of activation energy (Ea, eV) in the Arrhenius equation...
Temperature sensitivity of plankton in terms of activation energy (Ea, eV) in the Arrhenius equation...
The temperature sensitivity of phytoplankton growth rates, parameterized as the activation energy (E...
Whether phytoplankton growth is solely constrained by temperature (hotter is better) or compensated ...
The universal temperature dependence of metabolic rates has been used to predict how ocean biology w...
Sudden environmental changes like marine heatwaves will become more intense and frequent in the futu...
Grazing pressure, estimated as the ratio between microzooplankton grazing and phytoplankton growth r...
Understanding how marine phytoplankton will fare in response to the expected increases in ocean temp...
Climate warming has the potential to alter ecosystem function through temperature-dependent changes ...
10 pages, 5 figures, supplementary material https://doi.org/10.1038/s41396-018-0105-1Climate warming...
Marine phytoplankton generate half of global primary production, making them essential to ecosystem ...
Marine phytoplankton generate half of global primary production, making them essential to ecosystem ...
Marine phytoplankton generate half of global primary production, making them essential to ecosystem ...
Picophytoplankton account for most of the marine (sub-)tropical phytoplankton biomass and primary pr...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
Temperature sensitivity of plankton in terms of activation energy (Ea, eV) in the Arrhenius equation...
Temperature sensitivity of plankton in terms of activation energy (Ea, eV) in the Arrhenius equation...
The temperature sensitivity of phytoplankton growth rates, parameterized as the activation energy (E...
Whether phytoplankton growth is solely constrained by temperature (hotter is better) or compensated ...
The universal temperature dependence of metabolic rates has been used to predict how ocean biology w...
Sudden environmental changes like marine heatwaves will become more intense and frequent in the futu...
Grazing pressure, estimated as the ratio between microzooplankton grazing and phytoplankton growth r...
Understanding how marine phytoplankton will fare in response to the expected increases in ocean temp...
Climate warming has the potential to alter ecosystem function through temperature-dependent changes ...
10 pages, 5 figures, supplementary material https://doi.org/10.1038/s41396-018-0105-1Climate warming...
Marine phytoplankton generate half of global primary production, making them essential to ecosystem ...
Marine phytoplankton generate half of global primary production, making them essential to ecosystem ...
Marine phytoplankton generate half of global primary production, making them essential to ecosystem ...
Picophytoplankton account for most of the marine (sub-)tropical phytoplankton biomass and primary pr...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...