Proteomics

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Laboratory and in-situ insights into the chemoautotrophic and zero-valent sulfur formation pathway in a cold-seep bacterium


ABSTRACT: 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 hydrothermalis SP2, a thiosulfate/sulfide-oxidizing chemoautotrophic bacterium, from cold-seep sediment. Electron microscopy, Raman spectroscopy, and stoichiometry confirmed the efficient production of zero-valent sulfur (ZVS) by G. hydrothermalis SP2. Genomic, transcriptomic, and qRT-PCR analyses revealed its utilization of the Sox pathway for thiosulfate oxidation and the fccB gene for sulfide oxidation. Its chemoautotrophic capability mediated by the Calvin-Benson-Bassham (CBB) cycle was identified through isotopic and qRT-PCR analyses. In-situ studies demonstrated its ability to produce ZVS by oxidizing sulfide in cold seeps, with a preference for different genes compared to those under laboratory conditions. Metagenomic and metatranscriptomic analyses indicated the ubiquity of its sulfur oxidation-based chemoautotrophic pathway in cold seep sediments. Therefore, this strain holds significance for investigating sulfur oxidation-based chemoautotrophic pathways in cold seeps.

INSTRUMENT(S):

ORGANISM(S): Guyparkeria Hydrothermalis

TISSUE(S): Cell Culture

SUBMITTER: Ruining Cai  

LAB HEAD: Ruining Cai

PROVIDER: PXD073871 | Pride | 2026-02-25

REPOSITORIES: Pride

Dataset's files

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Action DRS
BE396ELQ_Control_Slot2-50_1_20631.d.zip Other
BE396ELQ_Exchange_Slot2-49_1_20629.d.zip Other
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