Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CCMs) to accumulate CO2 around their carboxylating enzyme ribulose‐1,5‐bisphosphate carboxylase/oxygenase (RuBisCO). Earlier evolved phytoplankton groups were shown to exhibit higher CCM activities to compensate for their RuBisCO with low CO2 specificities. Here, we tested whether earlier evolved phytoplankton groups also exhibit a higher CCM plasticity. To this end, we collected data from literature and applied a Bayesian linear meta‐analytic model. Our results show that with elevated pCO2, photosynthetic CO2 affinities decreased strongest and most consistent for the earlier evolved groups, i.e., cyanobacteria and dinoflagellates, while CO2‐de...
Oxygenic photosynthesis evolved at least 2.4 Ga; all oxygenic organisms use the ribulose bisphosphat...
While marine phytoplankton rival plants in their contribution to global primary productivity, our un...
While marine phytoplankton rival plants in their contribution to global primary productivity our und...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon-concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon-concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Oxygenic photosynthesis evolved at least 2.4 Ga; all oxygenic organisms use the ribulose bisphosphat...
Oxygenic photosynthesis evolved at least 2.4 Ga; all oxygenic organisms use the ribulose bisphosphat...
Oxygenic photosynthesis evolved at least 2.4 Ga; all oxygenic organisms use the ribulose bisphosphat...
Oxygenic photosynthesis evolved at least 2.4 Ga; all oxygenic organisms use the ribulose bisphosphat...
Oxygenic photosynthesis evolved at least 2.4 Ga; all oxygenic organisms use the ribulose bisphosphat...
While marine phytoplankton rival plants in their contribution to global primary productivity, our un...
While marine phytoplankton rival plants in their contribution to global primary productivity our und...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon-concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon-concentrating mechanisms (CC...
Phytoplankton photosynthesis strongly relies on the operation of carbon‐concentrating mechanisms (CC...
Oxygenic photosynthesis evolved at least 2.4 Ga; all oxygenic organisms use the ribulose bisphosphat...
Oxygenic photosynthesis evolved at least 2.4 Ga; all oxygenic organisms use the ribulose bisphosphat...
Oxygenic photosynthesis evolved at least 2.4 Ga; all oxygenic organisms use the ribulose bisphosphat...
Oxygenic photosynthesis evolved at least 2.4 Ga; all oxygenic organisms use the ribulose bisphosphat...
Oxygenic photosynthesis evolved at least 2.4 Ga; all oxygenic organisms use the ribulose bisphosphat...
While marine phytoplankton rival plants in their contribution to global primary productivity, our un...
While marine phytoplankton rival plants in their contribution to global primary productivity our und...