Growth limitation of marine algae due to lack of iron occurs in up to 40% of the global ocean. Despite important advances on the impact of organic compounds on iron biogeochemistry, their roles in controlling iron availability to prokaryotic and eukaryotic phytoplankton remain unclear. Whether algal and bacterial exopolymeric substances (EPS) include organic ligands which may help iron-limited phytoplankton growth remains an unknown. If so, then EPS could relieve phytoplankton iron limitation with implications for the biological carbon pump and hence the regulation of atmospheric CO2. Here we compared the biological impact of algal, bacterial and in situ EPS with model compounds, a siderophore and two saccharides on biological parameters in...
Iron (Fe) is known to be mostly bound to organic ligands and to limit primary productivity in the So...
Most of the dissolved iron (Fe) in seawater is complexed by organic ligands. One key issue in unders...
Organic ligands play a key role controlling trace metal bioavailability in the world's oceans, yet t...
Growth limitation of marine algae due to lack of iron occurs in up to 40% of the global ocean. Despi...
It is widely accepted that the complexation of iron (Fe) with organic compounds is the primary facto...
It is widely accepted that the complexation of iron (Fe) with organic compounds is the primary facto...
Iron limits primary productivity in vast regions of the ocean. Given that marine phytoplankton contr...
Iron limits primary productivity in vast regions of the ocean. Given that marine phytoplankton contr...
Iron limits primary productivity in vast regions of the ocean. Given that marine phytoplankton contr...
© 2015 Elsevier B.V. It is widely accepted that the complexation of iron (Fe) with organic compounds...
Iron (Fe) is known to be mostly bound to organic ligands and to limit primary productivity in the So...
Iron (Fe) is known to be mostly bound to organic ligands and to limit primary productivity in the So...
International audienceOrganic ligands such as exopolymeric substances (EPS) are known to form comple...
Organic ligands play key roles in controlling the bioavailability of trace metals in the world ocean...
Iron is arguably the most important micronutrient in the marine environment due to its involvement i...
Iron (Fe) is known to be mostly bound to organic ligands and to limit primary productivity in the So...
Most of the dissolved iron (Fe) in seawater is complexed by organic ligands. One key issue in unders...
Organic ligands play a key role controlling trace metal bioavailability in the world's oceans, yet t...
Growth limitation of marine algae due to lack of iron occurs in up to 40% of the global ocean. Despi...
It is widely accepted that the complexation of iron (Fe) with organic compounds is the primary facto...
It is widely accepted that the complexation of iron (Fe) with organic compounds is the primary facto...
Iron limits primary productivity in vast regions of the ocean. Given that marine phytoplankton contr...
Iron limits primary productivity in vast regions of the ocean. Given that marine phytoplankton contr...
Iron limits primary productivity in vast regions of the ocean. Given that marine phytoplankton contr...
© 2015 Elsevier B.V. It is widely accepted that the complexation of iron (Fe) with organic compounds...
Iron (Fe) is known to be mostly bound to organic ligands and to limit primary productivity in the So...
Iron (Fe) is known to be mostly bound to organic ligands and to limit primary productivity in the So...
International audienceOrganic ligands such as exopolymeric substances (EPS) are known to form comple...
Organic ligands play key roles in controlling the bioavailability of trace metals in the world ocean...
Iron is arguably the most important micronutrient in the marine environment due to its involvement i...
Iron (Fe) is known to be mostly bound to organic ligands and to limit primary productivity in the So...
Most of the dissolved iron (Fe) in seawater is complexed by organic ligands. One key issue in unders...
Organic ligands play a key role controlling trace metal bioavailability in the world's oceans, yet t...