Structure and function of the soil microbiome underlying N2O emissions from global wetlands

The wetland soil microbiome has a major impact on greenhouse gas emissions. Here the authors characterize how a group of archaea contribute to N2O emissions and find that climate and land use changes could promote these organisms.

Bibliographic Details
Main Authors: Mohammad Bahram, Mikk Espenberg, Jaan Pärn, Laura Lehtovirta-Morley, Sten Anslan, Kuno Kasak, Urmas Kõljalg, Jaan Liira, Martin Maddison, Mari Moora, Ülo Niinemets, Maarja Öpik, Meelis Pärtel, Kaido Soosaar, Martin Zobel, Falk Hildebrand, Leho Tedersoo, Ülo Mander
Format: Article
Language:English
Published: Nature Portfolio 2022-03-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-29161-3
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author Mohammad Bahram
Mikk Espenberg
Jaan Pärn
Laura Lehtovirta-Morley
Sten Anslan
Kuno Kasak
Urmas Kõljalg
Jaan Liira
Martin Maddison
Mari Moora
Ülo Niinemets
Maarja Öpik
Meelis Pärtel
Kaido Soosaar
Martin Zobel
Falk Hildebrand
Leho Tedersoo
Ülo Mander
author_facet Mohammad Bahram
Mikk Espenberg
Jaan Pärn
Laura Lehtovirta-Morley
Sten Anslan
Kuno Kasak
Urmas Kõljalg
Jaan Liira
Martin Maddison
Mari Moora
Ülo Niinemets
Maarja Öpik
Meelis Pärtel
Kaido Soosaar
Martin Zobel
Falk Hildebrand
Leho Tedersoo
Ülo Mander
author_sort Mohammad Bahram
collection DOAJ
description The wetland soil microbiome has a major impact on greenhouse gas emissions. Here the authors characterize how a group of archaea contribute to N2O emissions and find that climate and land use changes could promote these organisms.
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spelling doaj.art-ac652531db3045ef9ed98561b6442f682022-12-21T23:33:20ZengNature PortfolioNature Communications2041-17232022-03-0113111010.1038/s41467-022-29161-3Structure and function of the soil microbiome underlying N2O emissions from global wetlandsMohammad Bahram0Mikk Espenberg1Jaan Pärn2Laura Lehtovirta-Morley3Sten Anslan4Kuno Kasak5Urmas Kõljalg6Jaan Liira7Martin Maddison8Mari Moora9Ülo Niinemets10Maarja Öpik11Meelis Pärtel12Kaido Soosaar13Martin Zobel14Falk Hildebrand15Leho Tedersoo16Ülo Mander17Institute of Ecology and Earth Sciences, University of TartuInstitute of Ecology and Earth Sciences, University of TartuInstitute of Ecology and Earth Sciences, University of TartuSchool of Biological Sciences, University of East AngliaInstitute of Ecology and Earth Sciences, University of TartuInstitute of Ecology and Earth Sciences, University of TartuInstitute of Ecology and Earth Sciences, University of TartuInstitute of Ecology and Earth Sciences, University of TartuInstitute of Ecology and Earth Sciences, University of TartuInstitute of Ecology and Earth Sciences, University of TartuInstitute of Agricultural & Environmental Sciences, Estonian University of Life SciencesInstitute of Ecology and Earth Sciences, University of TartuInstitute of Ecology and Earth Sciences, University of TartuInstitute of Ecology and Earth Sciences, University of TartuInstitute of Ecology and Earth Sciences, University of TartuQuadram Institute BioscienceCollege of Science, King Saud UniversityInstitute of Ecology and Earth Sciences, University of TartuThe wetland soil microbiome has a major impact on greenhouse gas emissions. Here the authors characterize how a group of archaea contribute to N2O emissions and find that climate and land use changes could promote these organisms.https://doi.org/10.1038/s41467-022-29161-3
spellingShingle Mohammad Bahram
Mikk Espenberg
Jaan Pärn
Laura Lehtovirta-Morley
Sten Anslan
Kuno Kasak
Urmas Kõljalg
Jaan Liira
Martin Maddison
Mari Moora
Ülo Niinemets
Maarja Öpik
Meelis Pärtel
Kaido Soosaar
Martin Zobel
Falk Hildebrand
Leho Tedersoo
Ülo Mander
Structure and function of the soil microbiome underlying N2O emissions from global wetlands
Nature Communications
title Structure and function of the soil microbiome underlying N2O emissions from global wetlands
title_full Structure and function of the soil microbiome underlying N2O emissions from global wetlands
title_fullStr Structure and function of the soil microbiome underlying N2O emissions from global wetlands
title_full_unstemmed Structure and function of the soil microbiome underlying N2O emissions from global wetlands
title_short Structure and function of the soil microbiome underlying N2O emissions from global wetlands
title_sort structure and function of the soil microbiome underlying n2o emissions from global wetlands
url https://doi.org/10.1038/s41467-022-29161-3
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