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Anammox bacteria drive fixed nitrogen loss in hadal trench sediments.
Thamdrup, Bo; Schauberger, Clemens; Larsen, Morten; Trouche, Blandine; Maignien, Lois; Arnaud-Haond, Sophie; Wenzhöfer, Frank; Glud, Ronnie N.
Afiliação
  • Thamdrup B; Nordcee and HADAL, Department of Biology, University of Southern Denmark 5230 Odense M, Denmark; bot@biology.sdu.dk.
  • Schauberger C; Nordcee and HADAL, Department of Biology, University of Southern Denmark 5230 Odense M, Denmark.
  • Larsen M; Nordcee and HADAL, Department of Biology, University of Southern Denmark 5230 Odense M, Denmark.
  • Trouche B; Microbiology of Extreme Environments Laboratory, CNRS, Institut Français de Recherche pour L'Exploitation de la Mer, University of Brest, 29280 Plouzané, France.
  • Maignien L; Microbiology of Extreme Environments Laboratory, CNRS, Institut Français de Recherche pour L'Exploitation de la Mer, University of Brest, 29280 Plouzané, France.
  • Arnaud-Haond S; MARBEC, Université Montpellier, Institut Français de Recherche pour L'Exploitation de la Mer, CNRS, Institut de recherche pour le développement, 34203 Sète, France.
  • Wenzhöfer F; Nordcee and HADAL, Department of Biology, University of Southern Denmark 5230 Odense M, Denmark.
  • Glud RN; HGF-MPG Group for Deep Sea Ecology and Technology, Alfred Wegener Institute Helmholtz Center for Polar and Marine Research 27570 Bremerhaven, Germany.
Proc Natl Acad Sci U S A ; 118(46)2021 11 16.
Article em En | MEDLINE | ID: mdl-34764222
ABSTRACT
Benthic N2 production by microbial denitrification and anammox is the largest sink for fixed nitrogen in the oceans. Most N2 production occurs on the continental shelves, where a high flux of reactive organic matter fuels the depletion of nitrate close to the sediment surface. By contrast, N2 production rates in abyssal sediments are low due to low inputs of reactive organics, and nitrogen transformations are dominated by aerobic nitrification and the release of nitrate to the bottom water. Here, we demonstrate that this trend is reversed in the deepest parts of the oceans, the hadal trenches, where focusing of reactive organic matter enhances benthic microbial activity. Thus, at ∼8-km depth in the Atacama Trench, underlying productive surface waters, nitrate is depleted within a few centimeters of the sediment surface, N2 production rates reach those reported from some continental margin sites, and fixed nitrogen loss is mainly conveyed by anammox bacteria. These bacteria are closely related to those known from shallow oxygen minimum zone waters, and comparison of activities measured in the laboratory and in situ suggest they are piezotolerant. Even the Kermadec Trench, underlying oligotrophic surface waters, exhibits substantial fixed N removal. Our results underline the role of hadal sediments as hot spots of deep-sea biological activity, revealing a fully functional benthic nitrogen cycle at high hydrostatic pressure and pointing to hadal sediments as a previously unexplored niche for anaerobic microbial ecology and diagenesis.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Sedimentos Geológicos / Bactérias Fixadoras de Nitrogênio / Nitrogênio / Fixação de Nitrogênio Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Sedimentos Geológicos / Bactérias Fixadoras de Nitrogênio / Nitrogênio / Fixação de Nitrogênio Idioma: En Ano de publicação: 2021 Tipo de documento: Article