The Baltic Sea is characterized by hyposaline surface waters, hypoxic and anoxic deep waters and sediments. These conditions, which in turn lead to a steep oxygen gradient, are particularly evident at Landsort Deep in the Baltic Proper. Given these substantial differences in environmental parameters at Landsort Deep, we performed a metagenomic census spanning surface to sediment to establish whether the microbial communities at this site are as stratified as the physical environment. We report strong stratification across a depth transect for both functional capacity and taxonomic affiliation, with functional capacity corresponding most closely to key environmental parameters of oxygen, salinity and temperature. We report similarities in fu...
Summary Community structures of active bacterial populations were investigated along a vertical redo...
Globally, marine sediments are a vast repository of organic matter, which is degraded through variou...
Over the past century the spread of hypoxia in the Baltic Sea has been drastic, reaching its 'arm' i...
The Baltic Sea is characterized by hyposaline surface waters, hypoxic and anoxic deep waters and sed...
The Baltic Sea is characterized by hyposaline surface waters, hypoxic and anoxic deep waters and sed...
Baltic Sea deep water and sediments hold one of the largest anthropogenically induced hypoxic areas ...
Numerous investigations of bacterial communities using sequence analysis of environmental DNA have r...
Background: Microorganisms in the seafoor use a wide range of metabolic processes, which are coupled...
Abstract Background A key characteristic of eutrophication in coastal seas is the expansion of hypox...
Environmental microorganisms are fundamental to ecosystem function, acting as drivers in processes s...
Coastal aquatic systems suffer from nutrient enrichment, which results in accelerated eutrophication...
Through complex metabolic interactions aquatic microbial life is essential as a driver of ecosystem ...
2018-08-02Sediments lay at the bottom of the ocean, containing the largest active reservoir of organ...
The Baltic Sea is an enclosed marine system that suffers from expanding zones of oxygen deficiency d...
In the sedimental organic matter of eutrophic continental seas, such as the largest dead zone in the...
Summary Community structures of active bacterial populations were investigated along a vertical redo...
Globally, marine sediments are a vast repository of organic matter, which is degraded through variou...
Over the past century the spread of hypoxia in the Baltic Sea has been drastic, reaching its 'arm' i...
The Baltic Sea is characterized by hyposaline surface waters, hypoxic and anoxic deep waters and sed...
The Baltic Sea is characterized by hyposaline surface waters, hypoxic and anoxic deep waters and sed...
Baltic Sea deep water and sediments hold one of the largest anthropogenically induced hypoxic areas ...
Numerous investigations of bacterial communities using sequence analysis of environmental DNA have r...
Background: Microorganisms in the seafoor use a wide range of metabolic processes, which are coupled...
Abstract Background A key characteristic of eutrophication in coastal seas is the expansion of hypox...
Environmental microorganisms are fundamental to ecosystem function, acting as drivers in processes s...
Coastal aquatic systems suffer from nutrient enrichment, which results in accelerated eutrophication...
Through complex metabolic interactions aquatic microbial life is essential as a driver of ecosystem ...
2018-08-02Sediments lay at the bottom of the ocean, containing the largest active reservoir of organ...
The Baltic Sea is an enclosed marine system that suffers from expanding zones of oxygen deficiency d...
In the sedimental organic matter of eutrophic continental seas, such as the largest dead zone in the...
Summary Community structures of active bacterial populations were investigated along a vertical redo...
Globally, marine sediments are a vast repository of organic matter, which is degraded through variou...
Over the past century the spread of hypoxia in the Baltic Sea has been drastic, reaching its 'arm' i...