Recent studies have revealed clear regional differences in the particulate organic matter composition and stoichiometry of plankton communities. In contrast, less is known about potential mechanisms and patterns of temporal changes in the elemental composition of marine systems. Here, we monitored weekly changes in environmental conditions, phytoplankton abundances, and particulate organic carbon, nitrogen, and phosphorus concentrations over a 3-yr period. We found that variation in the particulate organic matter (POM) concentrations and ratios were related to seasonal oscillations of environmental conditions and phytoplankton abundances. Periods with low temperature, high nutrient concentrations and a dominance of large phytoplankton corre...
Redfield proportions (106C:16N:1P:138-O2) have been used to describe ocean biogeochemical patterns s...
The elemental stoichiometry of dissolved and particulate matter in the sea, especially the nitrogen-...
Nitrogen (N) and phosphorus (P) availability, in addition to other macro- and micronutrients, determ...
Recent studies have revealed clear regional differences in the particulate organic matter compositio...
International audienceWhat is the temporal variability of the elemental stoichiometry of marine micr...
Nearly 75 years ago, Alfred C. Redfield observed a similarity between the elemental composition of m...
Elemental ratios of particulate organic matter (POM) are key to linking biogeochemical cycles. Micro...
It is widely recognized that the stoichiometry of nutrient elements in phytoplankton varies within t...
Modelers of global ocean biogeochemistry are beginning to represent a phenomenon that biologists hav...
Oceanic nutrient cycles are coupled, yet carbon-nitrogen-phosphorus (C:N:P) stoichiometry in marine ...
The concept of constant elemental ratios in plankton communities—the Redfield ratio—is of central im...
The elemental composition of particulate organic matter in the surface ocean significantly affects t...
Nitrogen (N) and phosphorus (P) availability, in addition to other macro- and micronutrients, determ...
The controls on the 'Redfield' N:P stoichiometry of marine phytoplankton and hence the N:P ratio of ...
The similarity of the average ratios of nitrogen (N) and phosphorus (P) in marine dissolved inorgani...
Redfield proportions (106C:16N:1P:138-O2) have been used to describe ocean biogeochemical patterns s...
The elemental stoichiometry of dissolved and particulate matter in the sea, especially the nitrogen-...
Nitrogen (N) and phosphorus (P) availability, in addition to other macro- and micronutrients, determ...
Recent studies have revealed clear regional differences in the particulate organic matter compositio...
International audienceWhat is the temporal variability of the elemental stoichiometry of marine micr...
Nearly 75 years ago, Alfred C. Redfield observed a similarity between the elemental composition of m...
Elemental ratios of particulate organic matter (POM) are key to linking biogeochemical cycles. Micro...
It is widely recognized that the stoichiometry of nutrient elements in phytoplankton varies within t...
Modelers of global ocean biogeochemistry are beginning to represent a phenomenon that biologists hav...
Oceanic nutrient cycles are coupled, yet carbon-nitrogen-phosphorus (C:N:P) stoichiometry in marine ...
The concept of constant elemental ratios in plankton communities—the Redfield ratio—is of central im...
The elemental composition of particulate organic matter in the surface ocean significantly affects t...
Nitrogen (N) and phosphorus (P) availability, in addition to other macro- and micronutrients, determ...
The controls on the 'Redfield' N:P stoichiometry of marine phytoplankton and hence the N:P ratio of ...
The similarity of the average ratios of nitrogen (N) and phosphorus (P) in marine dissolved inorgani...
Redfield proportions (106C:16N:1P:138-O2) have been used to describe ocean biogeochemical patterns s...
The elemental stoichiometry of dissolved and particulate matter in the sea, especially the nitrogen-...
Nitrogen (N) and phosphorus (P) availability, in addition to other macro- and micronutrients, determ...