Growth of large phytoplankton is considered to be diffusion limited at low nutrient concentrations, yet their constraints and contributions to carbon (C) and nitrogen fluxes in field plankton communities are poorly quantified under this condition. Using secondary ion mass spectrometry (SIMS), we quantified cell-specific assimilation rates of C, nitrate, and ammonium in summer communities of large phytoplankton when dissolved inorganic nitrogen concentrations are low in temperate coastal regions. Chain-forming diatoms composed 6% of total particulate organic carbon, but contributed 20% of C assimilation, 54% of nitrate assimilation and 32% of ammonium assimilation within the plankton community. In contrast, large dinoflagellates composed 11%...
This study was designed to test the hypothesis that ammonium is the more important form of dissolved...
Dinoflagellates employ a multitude of strategies to competitively assimilate nutrients. These includ...
Abstract: Isotopic fractionation of ammonium (NH,+ ) and nitrate (NO,-) during uptake by phytoplankt...
Growth of large phytoplankton is considered to be diffusion limited at low nutrient concentrations, ...
Chain-forming diatoms are key CO2-fixing organisms in the ocean. Under turbulent conditions they for...
Ammonium is a central nutrient in aquatic systems. Yet, cell-specific ammonium assimilation among di...
Ammonium is a central nutrient in aquatic systems. Yet, cell-specific ammonium assimilation among di...
Chain-forming diatoms are key CO2-fixing organisms in the ocean. Under turbulent conditions they for...
Identifying and quantifying nitrogen pools is essential for understanding the nitrogen cycle in aqua...
Globally, mainly nitrogen or phosphorus is limiting the primary production. New nitrogen can enter e...
We examined the Zn uptake in marine diatoms and its transfer to marine copepods under different nutr...
The symbiotic planktonic foraminiferaOrbulina universainhabits open ocean oligotrophic ecosystems wh...
We examined the Zn uptake in marine diatoms and its transfer to marine copepods under different nutr...
Phytoplankton assimilation and microbial oxidation of ammonium are two critical conversion pathways ...
We assessed the utilization of inorganic and organic nitrogen compounds of different complexity by p...
This study was designed to test the hypothesis that ammonium is the more important form of dissolved...
Dinoflagellates employ a multitude of strategies to competitively assimilate nutrients. These includ...
Abstract: Isotopic fractionation of ammonium (NH,+ ) and nitrate (NO,-) during uptake by phytoplankt...
Growth of large phytoplankton is considered to be diffusion limited at low nutrient concentrations, ...
Chain-forming diatoms are key CO2-fixing organisms in the ocean. Under turbulent conditions they for...
Ammonium is a central nutrient in aquatic systems. Yet, cell-specific ammonium assimilation among di...
Ammonium is a central nutrient in aquatic systems. Yet, cell-specific ammonium assimilation among di...
Chain-forming diatoms are key CO2-fixing organisms in the ocean. Under turbulent conditions they for...
Identifying and quantifying nitrogen pools is essential for understanding the nitrogen cycle in aqua...
Globally, mainly nitrogen or phosphorus is limiting the primary production. New nitrogen can enter e...
We examined the Zn uptake in marine diatoms and its transfer to marine copepods under different nutr...
The symbiotic planktonic foraminiferaOrbulina universainhabits open ocean oligotrophic ecosystems wh...
We examined the Zn uptake in marine diatoms and its transfer to marine copepods under different nutr...
Phytoplankton assimilation and microbial oxidation of ammonium are two critical conversion pathways ...
We assessed the utilization of inorganic and organic nitrogen compounds of different complexity by p...
This study was designed to test the hypothesis that ammonium is the more important form of dissolved...
Dinoflagellates employ a multitude of strategies to competitively assimilate nutrients. These includ...
Abstract: Isotopic fractionation of ammonium (NH,+ ) and nitrate (NO,-) during uptake by phytoplankt...