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Understanding the extracellular electron transfer mechanisms of electroactive bacteria could help determine their potential in microbial fuel cells (MFCs) and their microbial syntrophy with redox-active minerals in natural environments. However, the mechanisms of extracellular electron transfer t...

2024-12-06 | MTBLS11447 | MetaboLights
sulfate reducing bacteria Metagenome
Sulfate-reducing bacteria (SRB) colonize the guts of ~50% of humans. We used genome-wide transposon mutagenesis and insertion-site sequencing (INSeq), RNA-Seq, plus mass spectrometry to characterize genetic and environmental factors that impact the niche of Desulfovibrio piger, the most common SRB i...
ORGANISM(S): Mus musculus 
The sulfate-reducing bacterium Desulfovibrio vulgaris Hildenborough possesses four periplasmic hydrogenases to facilitate the oxidation of molecular hydrogen. These include an [Fe], a [NiFeSe] and two [NiFe] hydrogenases encoded by the hyd, hys, hyn1 and hyn2 genes, respectively. In order to underst...
ORGANISM(S): Desulfovibrio vulgaris subsp. vulgaris str. Hildenborough 
Diversity of sulfate-reducing bacteria in piglet gut Raw sequence reads
Sulfur metabolism in the deep-sea cold seep has been mentioned to have an important contribution to the biogeochemical cycle of sulfur in previous studies. And sulfate reducing bacteria have also been considered to be a dominant microbial population in the deep-sea cold seep and play a crucial role ...
ORGANISM(S): Desulfovibrio marinus 
2024-06-16 | PXD023247 | Pride
sulfate-reducing enrichment culture Genome sequencing and assembly
a sulfate-reducing bacteria consortium
Isolation of sulfate-reducing bacteria from coal seams for genomic investigation
sulfate-reducing bacteria consortium SRB1 Raw sequence reads
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