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  2. Details for: Soil networks become more connected and take up more carbon as nature restoration progresses.
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Soil networks become more connected and take up more carbon as nature restoration progresses. [electronic resource]

By:
  • Morriën, Elly
Contributor(s):
  • Hannula, S Emilia
  • Snoek, L Basten
  • Helmsing, Nico R
  • Zweers, Hans
  • de Hollander, Mattias
  • Soto, Raquel Luján
  • Bouffaud, Marie-Lara
  • Buée, Marc
  • Dimmers, Wim
  • Duyts, Henk
  • Geisen, Stefan
  • Girlanda, Mariangela
  • Griffiths, Rob I
  • Jørgensen, Helene-Bracht
  • Jensen, John
  • Plassart, Pierre
  • Redecker, Dirk
  • Schmelz, Rűdiger M
  • Schmidt, Olaf
  • Thomson, Bruce C
  • Tisserant, Emilie
  • Uroz, Stephane
  • Winding, Anne
  • Bailey, Mark J
  • Bonkowski, Michael
  • Faber, Jack H
  • Martin, Francis
  • Lemanceau, Philippe
  • de Boer, Wietse
  • van Veen, Johannes A
  • van der Putten, Wim H
Producer: 20181114Description: 14349 p. digitalISSN:
  • 2041-1723
Subject(s):
  • Bacteria -- metabolism
  • Biomass
  • Biota -- physiology
  • Carbon -- chemistry
  • Environmental Restoration and Remediation
  • Food Chain
  • Fungi -- metabolism
  • Soil -- chemistry
  • Soil Microbiology
Online resources:
  • Available from publisher's website
In: Nature communications vol. 8
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Publication Type: Journal Article; Research Support, Non-U.S. Gov't

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

APA

Morriën E., Hannula S. E., Snoek L. B., Helmsing N. R., Zweers H., de Hollander M., Soto R. L., Bouffaud M., Buée M., Dimmers W., Duyts H., Geisen S., Girlanda M., Griffiths R. I., Jørgensen H., Jensen J., Plassart P., Redecker D., Schmelz R. M., Schmidt O., Thomson B. C., Tisserant E., Uroz S., Winding A., Bailey M. J., Bonkowski M., Faber J. H., Martin F., Lemanceau P., de Boer W., van Veen J. A. & van der Putten W. H. (20181114). Soil networks become more connected and take up more carbon as nature restoration progresses. : Nature communications.

Chicago

Morriën Elly, Hannula S Emilia, Snoek L Basten, Helmsing Nico R, Zweers Hans, de Hollander Mattias, Soto Raquel Luján, Bouffaud Marie-Lara, Buée Marc, Dimmers Wim, Duyts Henk, Geisen Stefan, Girlanda Mariangela, Griffiths Rob I, Jørgensen Helene-Bracht, Jensen John, Plassart Pierre, Redecker Dirk, Schmelz Rűdiger M, Schmidt Olaf, Thomson Bruce C, Tisserant Emilie, Uroz Stephane, Winding Anne, Bailey Mark J, Bonkowski Michael, Faber Jack H, Martin Francis, Lemanceau Philippe, de Boer Wietse, van Veen Johannes A and van der Putten Wim H. 20181114. Soil networks become more connected and take up more carbon as nature restoration progresses. : Nature communications.

Harvard

Morriën E., Hannula S. E., Snoek L. B., Helmsing N. R., Zweers H., de Hollander M., Soto R. L., Bouffaud M., Buée M., Dimmers W., Duyts H., Geisen S., Girlanda M., Griffiths R. I., Jørgensen H., Jensen J., Plassart P., Redecker D., Schmelz R. M., Schmidt O., Thomson B. C., Tisserant E., Uroz S., Winding A., Bailey M. J., Bonkowski M., Faber J. H., Martin F., Lemanceau P., de Boer W., van Veen J. A. and van der Putten W. H. (20181114). Soil networks become more connected and take up more carbon as nature restoration progresses. : Nature communications.

MLA

Morriën Elly, Hannula S Emilia, Snoek L Basten, Helmsing Nico R, Zweers Hans, de Hollander Mattias, Soto Raquel Luján, Bouffaud Marie-Lara, Buée Marc, Dimmers Wim, Duyts Henk, Geisen Stefan, Girlanda Mariangela, Griffiths Rob I, Jørgensen Helene-Bracht, Jensen John, Plassart Pierre, Redecker Dirk, Schmelz Rűdiger M, Schmidt Olaf, Thomson Bruce C, Tisserant Emilie, Uroz Stephane, Winding Anne, Bailey Mark J, Bonkowski Michael, Faber Jack H, Martin Francis, Lemanceau Philippe, de Boer Wietse, van Veen Johannes A and van der Putten Wim H. Soil networks become more connected and take up more carbon as nature restoration progresses. : Nature communications. 20181114.

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