Soil net nitrogen mineralisation across global grasslands

Nitrogen mineralisation (Nmin), an important index of soil fertility, is often determined in the laboratory, with an uncertain relationship to Nmin under field conditions. Here the authors show that combining laboratory measurements with environmental data greatly improves predictions of field Nmin...

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Autores principales: A. C. Risch, S. Zimmermann, R. Ochoa-Hueso, M. Schütz, B. Frey, J. L. Firn, P. A. Fay, F. Hagedorn, E. T. Borer, E. W. Seabloom, W. S. Harpole, J. M. H. Knops, R. L. McCulley, A. A. D. Broadbent, C. J. Stevens, M. L. Silveira, P. B. Adler, S. Báez, L. A. Biederman, J. M. Blair, C. S. Brown, M. C. Caldeira, S. L. Collins, P. Daleo, A. di Virgilio, A. Ebeling, N. Eisenhauer, E. Esch, A. Eskelinen, N. Hagenah, Y. Hautier, K. P. Kirkman, A. S. MacDougall, J. L. Moore, S. A. Power, S. M. Prober, C. Roscher, M. Sankaran, J. Siebert, K. L. Speziale, P. M. Tognetti, R. Virtanen, L. Yahdjian, B. Moser
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/097573728ecc4fb6939c93faa3f5f433
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spelling oai:doaj.org-article:097573728ecc4fb6939c93faa3f5f4332021-12-02T16:58:29ZSoil net nitrogen mineralisation across global grasslands10.1038/s41467-019-12948-22041-1723https://doaj.org/article/097573728ecc4fb6939c93faa3f5f4332019-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12948-2https://doaj.org/toc/2041-1723Nitrogen mineralisation (Nmin), an important index of soil fertility, is often determined in the laboratory, with an uncertain relationship to Nmin under field conditions. Here the authors show that combining laboratory measurements with environmental data greatly improves predictions of field Nmin at a global scale.A. C. RischS. ZimmermannR. Ochoa-HuesoM. SchützB. FreyJ. L. FirnP. A. FayF. HagedornE. T. BorerE. W. SeabloomW. S. HarpoleJ. M. H. KnopsR. L. McCulleyA. A. D. BroadbentC. J. StevensM. L. SilveiraP. B. AdlerS. BáezL. A. BiedermanJ. M. BlairC. S. BrownM. C. CaldeiraS. L. CollinsP. DaleoA. di VirgilioA. EbelingN. EisenhauerE. EschA. EskelinenN. HagenahY. HautierK. P. KirkmanA. S. MacDougallJ. L. MooreS. A. PowerS. M. ProberC. RoscherM. SankaranJ. SiebertK. L. SpezialeP. M. TognettiR. VirtanenL. YahdjianB. MoserNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-10 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
A. C. Risch
S. Zimmermann
R. Ochoa-Hueso
M. Schütz
B. Frey
J. L. Firn
P. A. Fay
F. Hagedorn
E. T. Borer
E. W. Seabloom
W. S. Harpole
J. M. H. Knops
R. L. McCulley
A. A. D. Broadbent
C. J. Stevens
M. L. Silveira
P. B. Adler
S. Báez
L. A. Biederman
J. M. Blair
C. S. Brown
M. C. Caldeira
S. L. Collins
P. Daleo
A. di Virgilio
A. Ebeling
N. Eisenhauer
E. Esch
A. Eskelinen
N. Hagenah
Y. Hautier
K. P. Kirkman
A. S. MacDougall
J. L. Moore
S. A. Power
S. M. Prober
C. Roscher
M. Sankaran
J. Siebert
K. L. Speziale
P. M. Tognetti
R. Virtanen
L. Yahdjian
B. Moser
Soil net nitrogen mineralisation across global grasslands
description Nitrogen mineralisation (Nmin), an important index of soil fertility, is often determined in the laboratory, with an uncertain relationship to Nmin under field conditions. Here the authors show that combining laboratory measurements with environmental data greatly improves predictions of field Nmin at a global scale.
format article
author A. C. Risch
S. Zimmermann
R. Ochoa-Hueso
M. Schütz
B. Frey
J. L. Firn
P. A. Fay
F. Hagedorn
E. T. Borer
E. W. Seabloom
W. S. Harpole
J. M. H. Knops
R. L. McCulley
A. A. D. Broadbent
C. J. Stevens
M. L. Silveira
P. B. Adler
S. Báez
L. A. Biederman
J. M. Blair
C. S. Brown
M. C. Caldeira
S. L. Collins
P. Daleo
A. di Virgilio
A. Ebeling
N. Eisenhauer
E. Esch
A. Eskelinen
N. Hagenah
Y. Hautier
K. P. Kirkman
A. S. MacDougall
J. L. Moore
S. A. Power
S. M. Prober
C. Roscher
M. Sankaran
J. Siebert
K. L. Speziale
P. M. Tognetti
R. Virtanen
L. Yahdjian
B. Moser
author_facet A. C. Risch
S. Zimmermann
R. Ochoa-Hueso
M. Schütz
B. Frey
J. L. Firn
P. A. Fay
F. Hagedorn
E. T. Borer
E. W. Seabloom
W. S. Harpole
J. M. H. Knops
R. L. McCulley
A. A. D. Broadbent
C. J. Stevens
M. L. Silveira
P. B. Adler
S. Báez
L. A. Biederman
J. M. Blair
C. S. Brown
M. C. Caldeira
S. L. Collins
P. Daleo
A. di Virgilio
A. Ebeling
N. Eisenhauer
E. Esch
A. Eskelinen
N. Hagenah
Y. Hautier
K. P. Kirkman
A. S. MacDougall
J. L. Moore
S. A. Power
S. M. Prober
C. Roscher
M. Sankaran
J. Siebert
K. L. Speziale
P. M. Tognetti
R. Virtanen
L. Yahdjian
B. Moser
author_sort A. C. Risch
title Soil net nitrogen mineralisation across global grasslands
title_short Soil net nitrogen mineralisation across global grasslands
title_full Soil net nitrogen mineralisation across global grasslands
title_fullStr Soil net nitrogen mineralisation across global grasslands
title_full_unstemmed Soil net nitrogen mineralisation across global grasslands
title_sort soil net nitrogen mineralisation across global grasslands
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/097573728ecc4fb6939c93faa3f5f433
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