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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
Chemoautotrophic bacteria belonging to the genus Sulfurimonas in the class Campylobacteria (formerly classified as Epsilonproteobacteria) play a key role in the sulfur cycle in a variety of oxygen-deficient or –limited and sulfide-rich marine and terrestrial environments. Previously, they were ident...
ORGANISM(S): Sulfurimonas denitrificans 
2019-07-22 | PXD009127 | Pride
Beller, H. R., T. E. Letain, A. Chakicherla, S. R. Kane, T. C. Legler, and M. A. Coleman. 2006. Whole-genome transcriptional analysis of chemolithoautotrophic thiosulfate oxidation by Thiobacillus denitrificans under aerobic vs. denitrifying conditions. Journal of Bacteriology 188:7005-7015. Thiobac...
ORGANISM(S): Thiobacillus denitrificans ATCC 25259 
2006-10-06 | GSE5256 | GEO
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
The response to thiosulfate availability in Hyphomicrobium denitrificans
Natural and anthropogenic wetlands are main sources of the atmospheric greenhouse gas methane. Methane emissions from wetlands are mitigated by methanotrophic microorganisms and by processes at the oxic-anoxic interface, such as sulfur cycling, that reduce the activity of methanogens. In this study,...
ORGANISM(S): Methylovirgula sp. 
2022-07-11 | PXD025979 | Pride
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