We report results of laboratory studies examining the effect of low levels of iron (Fe) availability on the intracellular Fe concentrations and specific growth rates in Southern Ocean diatoms (Fragilariopsis kerguelensis, Eucampia antarctica, Proboscia inermis, and Thalassiosira antarctica) and Phaeocystis antarctica. All species grew on Fe complexed to the siderophore desferrioxamine B (DFB). Concentrations of DFB up to 100-fold in excess of Fe were required to limit growth rates by ≥ 50%. Southern Ocean phytoplankton also grew on Fe complexed by ≥ 10-fold excess concentrations of the siderophores ferrichrome, enterobactin, or aerobactin, whereas the temperate coastal diatoms Thalassiosira weissflogii and Thalassiosira pseudonana did not. ...
International audienceBecause of recent findings that Fe is a limiting factor for phytoplankton acti...
Long-term phytoplankton monitoring studies, specifically in the coastal areas of the Western Antarct...
Because of recent findings that Fe is a limiting factor for phytoplankton activity even at relativel...
We report results of laboratory studies examining the effect of low levels of iron (Fe) availability...
In laboratory experiments we examined the interplay of light and iron availability on the intracellu...
recent study using Fe-limited phytoplankton strains, showed that iron (Fe) uptake rates normalized b...
In the Southern Ocean, phytoplankton growth is largely limited by the lack of iron, affecting the bi...
Waters of the Southern Ocean are characterized by high macronutrient concentrations but limited avai...
Iron (Fe) is known to be mostly bound to organic ligands and to limit primary productivity in the So...
Waters of the Southern Ocean are characterized by high macronutrient concentrations but limited avai...
International audienceWaters of the Southern Ocean are characterized by high macronutrient concentra...
Blooms of large diatoms dominate the CO2 drawdown and silicon cycle of the Southern Ocean in both th...
Thalassiosira oceanica, a marine centric diatom, possesses an extracellular reductase that reduces i...
Blooms of large diatoms dominate the CO2 drawdown and silicon cycle ofthe Southern Ocean in both the...
Long-term phytoplankton monitoring studies, specifically in the coastal areas of the Western Antarct...
International audienceBecause of recent findings that Fe is a limiting factor for phytoplankton acti...
Long-term phytoplankton monitoring studies, specifically in the coastal areas of the Western Antarct...
Because of recent findings that Fe is a limiting factor for phytoplankton activity even at relativel...
We report results of laboratory studies examining the effect of low levels of iron (Fe) availability...
In laboratory experiments we examined the interplay of light and iron availability on the intracellu...
recent study using Fe-limited phytoplankton strains, showed that iron (Fe) uptake rates normalized b...
In the Southern Ocean, phytoplankton growth is largely limited by the lack of iron, affecting the bi...
Waters of the Southern Ocean are characterized by high macronutrient concentrations but limited avai...
Iron (Fe) is known to be mostly bound to organic ligands and to limit primary productivity in the So...
Waters of the Southern Ocean are characterized by high macronutrient concentrations but limited avai...
International audienceWaters of the Southern Ocean are characterized by high macronutrient concentra...
Blooms of large diatoms dominate the CO2 drawdown and silicon cycle of the Southern Ocean in both th...
Thalassiosira oceanica, a marine centric diatom, possesses an extracellular reductase that reduces i...
Blooms of large diatoms dominate the CO2 drawdown and silicon cycle ofthe Southern Ocean in both the...
Long-term phytoplankton monitoring studies, specifically in the coastal areas of the Western Antarct...
International audienceBecause of recent findings that Fe is a limiting factor for phytoplankton acti...
Long-term phytoplankton monitoring studies, specifically in the coastal areas of the Western Antarct...
Because of recent findings that Fe is a limiting factor for phytoplankton activity even at relativel...