Soil networks become more connected and take up more carbon as nature restoration progresses

Effects of habitat restoration on belowground organisms and ecosystem processes are poorly understood. Morriën and colleagues show that changes in the composition and network interactions of soil biota lead to improved carbon uptake efficiency when formerly cultivated land is restored.

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Autores principales: Elly Morriën, S. Emilia Hannula, L. Basten Snoek, Nico R. Helmsing, Hans Zweers, Mattias de Hollander, Raquel Luján Soto, Marie-Lara Bouffaud, Marc Buée, Wim Dimmers, Henk Duyts, Stefan Geisen, Mariangela Girlanda, Rob I. Griffiths, Helene-Bracht Jørgensen, John Jensen, Pierre Plassart, Dirk Redecker, Rűdiger M Schmelz, Olaf Schmidt, Bruce C. Thomson, Emilie Tisserant, Stephane Uroz, Anne Winding, Mark J. Bailey, Michael Bonkowski, Jack H. Faber, Francis Martin, Philippe Lemanceau, Wietse de Boer, Johannes A. van Veen, Wim H. van der Putten
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/29736a92b8f9453482171ccd457351ea
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spelling oai:doaj.org-article:29736a92b8f9453482171ccd457351ea2021-12-02T15:38:41ZSoil networks become more connected and take up more carbon as nature restoration progresses10.1038/ncomms143492041-1723https://doaj.org/article/29736a92b8f9453482171ccd457351ea2017-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms14349https://doaj.org/toc/2041-1723Effects of habitat restoration on belowground organisms and ecosystem processes are poorly understood. Morriën and colleagues show that changes in the composition and network interactions of soil biota lead to improved carbon uptake efficiency when formerly cultivated land is restored.Elly MorriënS. Emilia HannulaL. Basten SnoekNico R. HelmsingHans ZweersMattias de HollanderRaquel Luján SotoMarie-Lara BouffaudMarc BuéeWim DimmersHenk DuytsStefan GeisenMariangela GirlandaRob I. GriffithsHelene-Bracht JørgensenJohn JensenPierre PlassartDirk RedeckerRűdiger M SchmelzOlaf SchmidtBruce C. ThomsonEmilie TisserantStephane UrozAnne WindingMark J. BaileyMichael BonkowskiJack H. FaberFrancis MartinPhilippe LemanceauWietse de BoerJohannes A. van VeenWim H. van der PuttenNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-10 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Elly Morriën
S. Emilia Hannula
L. Basten Snoek
Nico R. Helmsing
Hans Zweers
Mattias de Hollander
Raquel Luján Soto
Marie-Lara Bouffaud
Marc Buée
Wim Dimmers
Henk Duyts
Stefan Geisen
Mariangela Girlanda
Rob I. Griffiths
Helene-Bracht Jørgensen
John Jensen
Pierre Plassart
Dirk Redecker
Rűdiger M Schmelz
Olaf Schmidt
Bruce C. Thomson
Emilie Tisserant
Stephane Uroz
Anne Winding
Mark J. Bailey
Michael Bonkowski
Jack H. Faber
Francis Martin
Philippe Lemanceau
Wietse de Boer
Johannes A. van Veen
Wim H. van der Putten
Soil networks become more connected and take up more carbon as nature restoration progresses
description Effects of habitat restoration on belowground organisms and ecosystem processes are poorly understood. Morriën and colleagues show that changes in the composition and network interactions of soil biota lead to improved carbon uptake efficiency when formerly cultivated land is restored.
format article
author Elly Morriën
S. Emilia Hannula
L. Basten Snoek
Nico R. Helmsing
Hans Zweers
Mattias de Hollander
Raquel Luján Soto
Marie-Lara Bouffaud
Marc Buée
Wim Dimmers
Henk Duyts
Stefan Geisen
Mariangela Girlanda
Rob I. Griffiths
Helene-Bracht Jørgensen
John Jensen
Pierre Plassart
Dirk Redecker
Rűdiger M Schmelz
Olaf Schmidt
Bruce C. Thomson
Emilie Tisserant
Stephane Uroz
Anne Winding
Mark J. Bailey
Michael Bonkowski
Jack H. Faber
Francis Martin
Philippe Lemanceau
Wietse de Boer
Johannes A. van Veen
Wim H. van der Putten
author_facet Elly Morriën
S. Emilia Hannula
L. Basten Snoek
Nico R. Helmsing
Hans Zweers
Mattias de Hollander
Raquel Luján Soto
Marie-Lara Bouffaud
Marc Buée
Wim Dimmers
Henk Duyts
Stefan Geisen
Mariangela Girlanda
Rob I. Griffiths
Helene-Bracht Jørgensen
John Jensen
Pierre Plassart
Dirk Redecker
Rűdiger M Schmelz
Olaf Schmidt
Bruce C. Thomson
Emilie Tisserant
Stephane Uroz
Anne Winding
Mark J. Bailey
Michael Bonkowski
Jack H. Faber
Francis Martin
Philippe Lemanceau
Wietse de Boer
Johannes A. van Veen
Wim H. van der Putten
author_sort Elly Morriën
title Soil networks become more connected and take up more carbon as nature restoration progresses
title_short Soil networks become more connected and take up more carbon as nature restoration progresses
title_full Soil networks become more connected and take up more carbon as nature restoration progresses
title_fullStr Soil networks become more connected and take up more carbon as nature restoration progresses
title_full_unstemmed Soil networks become more connected and take up more carbon as nature restoration progresses
title_sort soil networks become more connected and take up more carbon as nature restoration progresses
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/29736a92b8f9453482171ccd457351ea
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