The metabolic machinery of marine microbes can be remarkably plastic, allowing organisms to persist under extreme nutrient limitation. With some exceptions, most theoretical approaches to nutrient uptake in phytoplankton are largely dominated by the classic Michaelis - Menten (MM) uptake functional form, whose constant parameters cannot account for the observed plasticity in the uptake apparatus. Following seminal ideas by earlier researchers, we propose a simple cell-level model based on a dynamic view of the uptake process whereby the cell can regulate the synthesis of uptake proteins in response to changes in both internal and external nutrient concentrations. In our flexible approach, the maximum uptake rate and nutrient affinity increa...
Models of multiple potentially limiting nutrients currently employ either multiplicative or threshol...
Nutrient-phytoplankton-zooplankton models with general uptake functions in which only the internal n...
Phytoplankton growth and stoichiometry depend on the availability of multiple nutrients. We use a ma...
The metabolic machinery of marine microbes can be remarkably plastic, allowing organisms to persist ...
The elemental ratios of marine phytoplankton emerge from complex interactions between the biotic and...
Dynamical systems theory and bifurcation are used to analyze some simple models of nutrient limited ...
When single-celled phytoplanktonic organisms absorb nutrients from impoverished water they may deple...
Phytoplankton face environmental nutrient variations that occur in the dynamic upper layers of the o...
We try to answer the question of to what extent details in nutrient uptake and phytoplankton physiol...
The controls on the 'Redfield' N:P stoichiometry of marine phytoplankton and hence the N:P ratio of ...
International audienceRealistic modelling of marine ecosystems is necessary for improving our unders...
Scaling laws are central to relate ecological and physiological traits in unicellular autotrophs. Cl...
We present a new, optimization-based model for uptake kinetics of multiple nutrients, which has the ...
We have a limited understanding of the consequences of variations in microbial biodiversity on ocean...
The effect of phytoplankton cell size on the variation of nutrient uptake and exudation rates is exa...
Models of multiple potentially limiting nutrients currently employ either multiplicative or threshol...
Nutrient-phytoplankton-zooplankton models with general uptake functions in which only the internal n...
Phytoplankton growth and stoichiometry depend on the availability of multiple nutrients. We use a ma...
The metabolic machinery of marine microbes can be remarkably plastic, allowing organisms to persist ...
The elemental ratios of marine phytoplankton emerge from complex interactions between the biotic and...
Dynamical systems theory and bifurcation are used to analyze some simple models of nutrient limited ...
When single-celled phytoplanktonic organisms absorb nutrients from impoverished water they may deple...
Phytoplankton face environmental nutrient variations that occur in the dynamic upper layers of the o...
We try to answer the question of to what extent details in nutrient uptake and phytoplankton physiol...
The controls on the 'Redfield' N:P stoichiometry of marine phytoplankton and hence the N:P ratio of ...
International audienceRealistic modelling of marine ecosystems is necessary for improving our unders...
Scaling laws are central to relate ecological and physiological traits in unicellular autotrophs. Cl...
We present a new, optimization-based model for uptake kinetics of multiple nutrients, which has the ...
We have a limited understanding of the consequences of variations in microbial biodiversity on ocean...
The effect of phytoplankton cell size on the variation of nutrient uptake and exudation rates is exa...
Models of multiple potentially limiting nutrients currently employ either multiplicative or threshol...
Nutrient-phytoplankton-zooplankton models with general uptake functions in which only the internal n...
Phytoplankton growth and stoichiometry depend on the availability of multiple nutrients. We use a ma...