The sulfur cycle is an important, although understudied facet of today's modern oxygen minimum zones (OMZs). Sulfur cycling is most active in highly productive coastal OMZs where sulfide-rich sediments interact with the overlying water column, forming a tightly coupled benthic-pelagic sulfur cycle. In such productive coastal systems, highly eutrophic and anoxic conditions can result in the benthic release of sulfide leading to an intensification of OMZ-shelf biogeochemistry. Active blooms involving a succession of sulfide-oxidizing bacteria detoxify sulfide and reduce nitrate to N2, while generating nitrite and ammonium that augment anammox and nitrification. Furthermore, the abiotic interactions of sulfide with trace metals may have the po...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
Dysoxic marine waters (DMW, <1 M oxygen) are currently expanding in volume in the oceans, which has ...
The sulfur cycle is an important, although understudied facet of today's modern oxygen minimum zones...
The sulfur cycle is an important, although understudied facet of today's modern oxygen minimum zones...
Members of the gammaproteobacterial clade SUP05 couple water column sulfide oxidation to nitrate red...
Nitrogen cycling is normally thought to dominate the biogeochemistry and microbial ecology of oxygen...
Biological diversity in marine OMZs (oxygen minimum zones) is dominated by a complex community of ba...
Members of the gammaproteobacterial clade SUP05 couple water column sulfide oxidation to nitrate red...
Nitrogen cycling is normally thought to dominate the biogeochemistry and microbial ecology of oxygen...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
Dysoxic marine waters (DMW, <1 M oxygen) are currently expanding in volume in the oceans, which has ...
The sulfur cycle is an important, although understudied facet of today's modern oxygen minimum zones...
The sulfur cycle is an important, although understudied facet of today's modern oxygen minimum zones...
Members of the gammaproteobacterial clade SUP05 couple water column sulfide oxidation to nitrate red...
Nitrogen cycling is normally thought to dominate the biogeochemistry and microbial ecology of oxygen...
Biological diversity in marine OMZs (oxygen minimum zones) is dominated by a complex community of ba...
Members of the gammaproteobacterial clade SUP05 couple water column sulfide oxidation to nitrate red...
Nitrogen cycling is normally thought to dominate the biogeochemistry and microbial ecology of oxygen...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
In Eastern Boundary Upwelling Systems nutrient-rich waters are transported to the ocean surface, fue...
Dysoxic marine waters (DMW, <1 M oxygen) are currently expanding in volume in the oceans, which has ...