The filamentous diazotrophic cyanobacterium Trichodesmium is responsible for a significant fraction of marine di-nitrogen (N2) fixation. Growth and distribution of Trichodesmium and other diazotrophs in the vast oligotrophic subtropical gyres is influenced by iron (Fe) and phosphorus (P) availability, while reciprocally influencing the biogeochemistry of these nutrients. Here we use observations across natural inverse gradients in Fe and P in the North Atlantic subtropical gyre (NASG) to demonstrate how Trichodesmium acclimates in situ to resource availability. Transcriptomic analysis identified progressive upregulation of known iron-stress biomarker genes with decreasing Fe availability, and progressive upregulation of genes involved in th...
Trichodesmium is a biogeochemically important marine cyanobacterium, responsible for a significant p...
Trichodesmium is a biogeochemically important marine cyanobacterium, responsible for a significant p...
Trichodesmium is a biogeochemically important marine cyanobacterium, responsible for a significant p...
The filamentous diazotrophic cyanobacterium Trichodesmium is responsible for a significant fraction ...
The filamentous diazotrophic cyanobacterium Trichodesmium is responsible for a significant fraction ...
The filamentous diazotrophic cyanobacterium Trichodesmium is responsible for a significant fraction ...
The filamentous diazotrophic cyanobacterium Trichodesmium is responsible for a significant fraction ...
The activity of photosynthetic cyanobacteria capable of nitrogen (N2) fixation (diazotrophs) strongl...
The availability of nitrogen (N) is one of the crucial limiting factors constraining the growth and ...
Phytoplankton dominate surface ocean biomass and have major roles in global carbon and nutrient cycl...
Marine cyanobacteria of the genus Trichodesmium occur throughout the oligotrophic tropical and subtr...
Trichodesmium is a globally important marine microbe that provides fixed nitrogen (N) to otherwise N...
Trichodesmium is a globally important marine microbe that provides fixed nitrogen (N) to otherwise N...
Trichodesmiumisagloballyimportantmarinemicrobethatprovidesfixednitrogen(N)tootherwiseN-limited ecosys...
Trichodesmium is a biogeochemically important marine cyanobacterium, responsible for a significant p...
Trichodesmium is a biogeochemically important marine cyanobacterium, responsible for a significant p...
Trichodesmium is a biogeochemically important marine cyanobacterium, responsible for a significant p...
Trichodesmium is a biogeochemically important marine cyanobacterium, responsible for a significant p...
The filamentous diazotrophic cyanobacterium Trichodesmium is responsible for a significant fraction ...
The filamentous diazotrophic cyanobacterium Trichodesmium is responsible for a significant fraction ...
The filamentous diazotrophic cyanobacterium Trichodesmium is responsible for a significant fraction ...
The filamentous diazotrophic cyanobacterium Trichodesmium is responsible for a significant fraction ...
The activity of photosynthetic cyanobacteria capable of nitrogen (N2) fixation (diazotrophs) strongl...
The availability of nitrogen (N) is one of the crucial limiting factors constraining the growth and ...
Phytoplankton dominate surface ocean biomass and have major roles in global carbon and nutrient cycl...
Marine cyanobacteria of the genus Trichodesmium occur throughout the oligotrophic tropical and subtr...
Trichodesmium is a globally important marine microbe that provides fixed nitrogen (N) to otherwise N...
Trichodesmium is a globally important marine microbe that provides fixed nitrogen (N) to otherwise N...
Trichodesmiumisagloballyimportantmarinemicrobethatprovidesfixednitrogen(N)tootherwiseN-limited ecosys...
Trichodesmium is a biogeochemically important marine cyanobacterium, responsible for a significant p...
Trichodesmium is a biogeochemically important marine cyanobacterium, responsible for a significant p...
Trichodesmium is a biogeochemically important marine cyanobacterium, responsible for a significant p...
Trichodesmium is a biogeochemically important marine cyanobacterium, responsible for a significant p...