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We report a new DSR pathway that directly generates zero-valent sulfur (ZVS) in phylogenetically diverse SRB.
ORGANISM(S): Desulfovibrio vulgaris str. Hildenborough 
Generation of zero-valent sulfur from dissimilatory sulfate reduction in sulfate-reducing bacteria
Dissimilatory sulfate reduction (DSR) mediated by sulfate-reducing microorganisms (SRMs) plays a pivotal role in global sulfur, carbon, oxygen, and iron cycles since ~3.5 billion years ago. The canonical DSR pathway is believed to be sulfate reduction to sulfide. Herein, we report a new DSR pathway ...
ORGANISM(S): Desulfovibrio vulgaris str. Hildenborough 
2023-04-28 | PXD040825 | Pride
Microbial sulfur cycling and chemoautotrophy are focal points of research in cold seeps. However, limited culture-dependent and in-situ studies have described the biological features and ecological significance of chemoautotrophic sulfur-oxidizing bacteria. In this study, we isolated Guyparkeria hyd...
ORGANISM(S): Guyparkeria hydrothermalis 
2026-02-25 | PXD073871 | Pride
Zero-valent sulfur (ZVS) distributes widely in the deep-sea cold seep, which is important immediate in the active sulfur cycle of cold seep. In our preview work, a novel ZVS formation pathway discovered in the deep-sea cold weep bacterium Erythrobacter flavus 21-3 was described. However, whether thi...
ORGANISM(S): Erythrobacter sp. RAS19 
2022-07-09 | PXD029383 | Pride
The existence of light in various deep-sea environments has been well established. Our previous research found blue light promotes zero-valent sulfur (ZVS) production in Erythrobacter flavus 21-3, a bacterium isolated from the deep-sea cold seep. E. flavus 21-3 can convert thiosulfate to ZVS through...
ORGANISM(S): Erythrobacter 
2025-05-07 | PXD058843 | Pride
Bacteria isolated from diverse environments were found to sense blue light to regulate their biological functions. However, this ability of deep-sea bacteria has been studied rarely. In this study, we found serendipitously that blue light stimulated excess zero-valent sulfur (ZVS) production of E. f...
ORGANISM(S): Erythrobacter flavus 
2023-01-03 | PXD035435 | Pride
Zero-valent sulfur (ZVS) and thiosulfate are important intermediates in the biogeochemical cycle of sulfur. The former has been proved to be existed in the cold seep and hydrothermal systems. Three thiosulfate oxidation pathways are already identified and here we found a novel one in Erythrobacter, ...
ORGANISM(S): Erythrobacter flavus 
2021-09-09 | PXD016502 | Pride
Production of zero valent sulfur from dissimilatory sulfate reduction in a methanogenic bioreactor
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