Carbon cycling in anoxic marine sediments is dependent on uncultured microbial communities. Niches of heterotrophic microorganisms are defined by organic matter (OM) type and the different phases in OM degradation. We investigated how OM type defines microbial communities originating from organic-rich, anoxic sediments from the Baltic Sea. We compared changes in the sediment microbial community, after incubation with different stable isotope labeled OM types [i.e., particulate algal organic matter (PAOM), protein, and acetate], by using DNA stable isotope probing (DNA-SIP). Incorporation of 13C and/or 15N label was predominantly detected in members of the phyla Planctomycetes and Chloroflexi, which also formed the majority (>50%) of the ori...
ABSTRACT Stable isotope probing of magnetic-bead-captured rRNA (Mag-SIP) indicated clear differences...
In the marine water column, microbial autotrophs and heterotrophs coexist forming the beginning of t...
Marine pelagic redoxclines are zones of high dark CO2 fixation rates, which can correspond up to 30%...
Organic matter (OM) plays an important part in regulating the marine carbon cycle by linking the atm...
Numerous investigations of bacterial communities using sequence analysis of environmental DNA have r...
Globally, marine sediments are a vast repository of organic matter, which is degraded through variou...
2018-08-02Sediments lay at the bottom of the ocean, containing the largest active reservoir of organ...
Organic matter degradation in marine environments is essential for the recycling of nutrients, espec...
Large quantities of carbon are stored in marine dissolved organic matter (DOM), and its recycling ha...
<div><p>The Baltic Sea is characterized by hyposaline surface waters, hypoxic and anoxic deep waters...
The role of microorganisms in the cycling of sedimentary organic carbon is a crucial one. To better ...
The Baltic Sea is characterized by hyposaline surface waters, hypoxic and anoxic deep waters and sed...
Dissolved organic matter (DOM) is the main substrate and energy source for heterotrophic bacteriopla...
Baltic Sea deep water and sediments hold one of the largest anthropogenically induced hypoxic areas ...
Oral communicationThe microbe-dissolved organic matter (DOM) interactions include microbial uptake a...
ABSTRACT Stable isotope probing of magnetic-bead-captured rRNA (Mag-SIP) indicated clear differences...
In the marine water column, microbial autotrophs and heterotrophs coexist forming the beginning of t...
Marine pelagic redoxclines are zones of high dark CO2 fixation rates, which can correspond up to 30%...
Organic matter (OM) plays an important part in regulating the marine carbon cycle by linking the atm...
Numerous investigations of bacterial communities using sequence analysis of environmental DNA have r...
Globally, marine sediments are a vast repository of organic matter, which is degraded through variou...
2018-08-02Sediments lay at the bottom of the ocean, containing the largest active reservoir of organ...
Organic matter degradation in marine environments is essential for the recycling of nutrients, espec...
Large quantities of carbon are stored in marine dissolved organic matter (DOM), and its recycling ha...
<div><p>The Baltic Sea is characterized by hyposaline surface waters, hypoxic and anoxic deep waters...
The role of microorganisms in the cycling of sedimentary organic carbon is a crucial one. To better ...
The Baltic Sea is characterized by hyposaline surface waters, hypoxic and anoxic deep waters and sed...
Dissolved organic matter (DOM) is the main substrate and energy source for heterotrophic bacteriopla...
Baltic Sea deep water and sediments hold one of the largest anthropogenically induced hypoxic areas ...
Oral communicationThe microbe-dissolved organic matter (DOM) interactions include microbial uptake a...
ABSTRACT Stable isotope probing of magnetic-bead-captured rRNA (Mag-SIP) indicated clear differences...
In the marine water column, microbial autotrophs and heterotrophs coexist forming the beginning of t...
Marine pelagic redoxclines are zones of high dark CO2 fixation rates, which can correspond up to 30%...