ub.xmlui.mirage2.page-structure.muninLogoub.xmlui.mirage2.page-structure.openResearchArchiveLogo
    • EnglishEnglish
    • norsknorsk
  • Velg spraaknorsk 
    • EnglishEnglish
    • norsknorsk
  • Administrasjon/UB
Vis innførsel 
  •   Hjem
  • Fakultet for naturvitenskap og teknologi
  • Institutt for geovitenskap
  • Artikler, rapporter og annet (geovitenskap)
  • Vis innførsel
  •   Hjem
  • Fakultet for naturvitenskap og teknologi
  • Institutt for geovitenskap
  • Artikler, rapporter og annet (geovitenskap)
  • Vis innførsel
JavaScript is disabled for your browser. Some features of this site may not work without it.

Distinct methane-dependent biogeochemical states in Arctic seafloor gas hydrate mounds

Permanent lenke
https://hdl.handle.net/10037/23131
DOI
https://doi.org/10.1038/s41467-021-26549-5
Thumbnail
Åpne
article.pdf (2.428Mb)
Publisert versjon (PDF)
Dato
2021-11-02
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Forfatter
Klasek, Scott A.; Hong, Wei-Li; Torres, Marta E.; Ross, Stella; Hostetler, Katelyn; Portnov, Alexey; Gründger, Friederike; Colwell, Frederick S.
Sammendrag
Archaea mediating anaerobic methane oxidation are key in preventing methane produced in marine sediments from reaching the hydrosphere; however, a complete understanding of how microbial communities in natural settings respond to changes in the flux of methane remains largely uncharacterized. We investigate microbial communities in gas hydrate-bearing seafloor mounds at Storfjordrenna, offshore Svalbard in the high Arctic, where we identify distinct methane concentration profiles that include steady-state, recently-increasing subsurface diffusive flux, and active gas seepage. Populations of anaerobic methanotrophs and sulfate-reducing bacteria were highest at the seep site, while decreased community diversity was associated with a recent increase in methane influx. Despite high methane fluxes and methanotroph doubling times estimated at 5–9 months, microbial community responses were largely synchronous with the advancement of methane into shallower sediment horizons. Together, these provide a framework for interpreting subseafloor microbial responses to methane escape in a warming Arctic Ocean.
Forlag
Nature
Sitering
Klasek, Hong H, Torres ME, Ross, Hostetler, Portnov A, Gründger F, Colwell. Distinct methane-dependent biogeochemical states in Arctic seafloor gas hydrate mounds. Nature Communications. 2021;12
Metadata
Vis full innførsel
Samlinger
  • Artikler, rapporter og annet (geovitenskap) [806]
Copyright 2021 The Author(s)

Bla

Bla i hele MuninEnheter og samlingerForfatterlisteTittelDatoBla i denne samlingenForfatterlisteTittelDato
Logg inn

Statistikk

Antall visninger
UiT

Munin bygger på DSpace

UiT Norges Arktiske Universitet
Universitetsbiblioteket
uit.no/ub - munin@ub.uit.no

Tilgjengelighetserklæring