Peatlands of the Lehstenbach catchment (Germany) house as-yet-unidentified microorganisms with phylogenetically novel variants of the dissimilatory (bi)sulfite reductase genes dsrAB. These genes are characteristic of microorganisms that reduce sulfate, sulfite, or some organosulfonates for energy conservation but can also be present in anaerobic syntrophs. However, nothing is currently known regarding the abundance, community dynamics, and biogeography of these dsrAB-carrying microorganisms in peatlands. To tackle these issues, soils from a Lehstenbach catchment site (Schloppnerbrunnen II fen) from different depths were sampled at three time points over a 6-year period to analyze the diversity and distribution of dsrAB-containing microorgan...
A large fragment of the dissimilatory sulfite reductase genes (dsrAB) was PCR amplified and fully se...
Feuchtgebiete sind momentan noch eine Kohlenstoffsenke und speichern ungefähr ein Drittel alles orga...
Sulfate-reducing bacteria (SRB) play a major role in the coupled biogeochemical cycling of sulfur an...
Peatlands of the Lehstenbach catchment (Germany) house as-yet-unidentified microorganisms with phylo...
Methane emission from peatlands contributes substantially to global warming but is significantly red...
Sulfite- and Sulfate-reducing microorganisms (SRM) play important roles in anoxic environments, link...
Freshwater wetlands are a major source of the greenhouse gas methane but at the same time can functi...
Dissimilatory sulfate reduction in peatlands is sustained by a cryptic sulfur cycle and effectively ...
Dissimilatory sulfate reduction in peatlands is sustained by a cryptic sulfur cycle and effectively ...
Sulfur-cycling microorganisms impact organic matter decomposition in wetlands and consequently green...
Sequence analysis of genes encoding dissimilatory sulfite reductase (DSR) was used to identify sulfa...
Elucidating the in situ metabolic activity of phylogenetically diverse populations of sulfate-reduci...
The energy metabolism of essential microbial guilds in the biogeochemical sulfur cycle is based on a...
peer-reviewedForefields of receding glaciers are unique and sensitive environments representing nat...
The classical perception of members of the gram-positive Desulfotomaculum cluster I as sulfate-reduc...
A large fragment of the dissimilatory sulfite reductase genes (dsrAB) was PCR amplified and fully se...
Feuchtgebiete sind momentan noch eine Kohlenstoffsenke und speichern ungefähr ein Drittel alles orga...
Sulfate-reducing bacteria (SRB) play a major role in the coupled biogeochemical cycling of sulfur an...
Peatlands of the Lehstenbach catchment (Germany) house as-yet-unidentified microorganisms with phylo...
Methane emission from peatlands contributes substantially to global warming but is significantly red...
Sulfite- and Sulfate-reducing microorganisms (SRM) play important roles in anoxic environments, link...
Freshwater wetlands are a major source of the greenhouse gas methane but at the same time can functi...
Dissimilatory sulfate reduction in peatlands is sustained by a cryptic sulfur cycle and effectively ...
Dissimilatory sulfate reduction in peatlands is sustained by a cryptic sulfur cycle and effectively ...
Sulfur-cycling microorganisms impact organic matter decomposition in wetlands and consequently green...
Sequence analysis of genes encoding dissimilatory sulfite reductase (DSR) was used to identify sulfa...
Elucidating the in situ metabolic activity of phylogenetically diverse populations of sulfate-reduci...
The energy metabolism of essential microbial guilds in the biogeochemical sulfur cycle is based on a...
peer-reviewedForefields of receding glaciers are unique and sensitive environments representing nat...
The classical perception of members of the gram-positive Desulfotomaculum cluster I as sulfate-reduc...
A large fragment of the dissimilatory sulfite reductase genes (dsrAB) was PCR amplified and fully se...
Feuchtgebiete sind momentan noch eine Kohlenstoffsenke und speichern ungefähr ein Drittel alles orga...
Sulfate-reducing bacteria (SRB) play a major role in the coupled biogeochemical cycling of sulfur an...