A framework for modelling soil structure dynamics induced by biological activity.

biological processes degradation dynamics modelling soil structure

Journal

Global change biology
ISSN: 1365-2486
Titre abrégé: Glob Chang Biol
Pays: England
ID NLM: 9888746

Informations de publication

Date de publication:
Oct 2020
Historique:
received: 07 05 2020
accepted: 12 06 2020
pubmed: 22 7 2020
medline: 30 1 2021
entrez: 22 7 2020
Statut: ppublish

Résumé

Soil degradation is a worsening global phenomenon driven by socio-economic pressures, poor land management practices and climate change. A deterioration of soil structure at timescales ranging from seconds to centuries is implicated in most forms of soil degradation including the depletion of nutrients and organic matter, erosion and compaction. New soil-crop models that could account for soil structure dynamics at decadal to centennial timescales would provide insights into the relative importance of the various underlying physical (e.g. tillage, traffic compaction, swell/shrink and freeze/thaw) and biological (e.g. plant root growth, soil microbial and faunal activity) mechanisms, their impacts on soil hydrological processes and plant growth, as well as the relevant timescales of soil degradation and recovery. However, the development of such a model remains a challenge due to the enormous complexity of the interactions in the soil-plant system. In this paper, we focus on the impacts of biological processes on soil structure dynamics, especially the growth of plant roots and the activity of soil fauna and microorganisms. We first define what we mean by soil structure and then review current understanding of how these biological agents impact soil structure. We then develop a new framework for modelling soil structure dynamics, which is designed to be compatible with soil-crop models that operate at the soil profile scale and for long temporal scales (i.e. decades, centuries). We illustrate the modelling concept with a case study on the role of root growth and earthworm bioturbation in restoring the structure of a severely compacted soil.

Identifiants

pubmed: 32692435
doi: 10.1111/gcb.15289
pmc: PMC7539949
doi:

Substances chimiques

Soil 0

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

5382-5403

Subventions

Organisme : Svenska Forskningsrådet Formas
ID : 2018-02319

Informations de copyright

© 2020 The Authors. Global Change Biology published by John Wiley & Sons Ltd.

Références

Plant Soil. 2014;380(1-2):133-151
pubmed: 25834289
Nat Commun. 2020 Jan 27;11(1):522
pubmed: 31988306
Glob Chang Biol. 2020 Oct;26(10):5382-5403
pubmed: 32692435
Curr Opin Biotechnol. 2016 Oct;41:9-13
pubmed: 27019410
Eur J Soil Sci. 2017 Nov;68(6):806-816
pubmed: 29263712
Sci Total Environ. 2017 Nov 15;598:445-470
pubmed: 28454025
Plant Soil. 2014;381(1-2):193-213
pubmed: 25834290
J Exp Bot. 2016 Jun;67(12):3629-43
pubmed: 26980751
Soil Use Manag. 2015 Oct;31(Suppl Suppl 1):1-15
pubmed: 27667890
Microb Ecol. 2006 Jul;52(1):151-8
pubmed: 16680511
Glob Chang Biol. 2019 Jun;25(6):1895-1904
pubmed: 30900360
Science. 2004 Jun 11;304(5677):1634-7
pubmed: 15192219
Sci Total Environ. 2020 Apr 15;713:136491
pubmed: 31962242
PLoS One. 2015 Jun 18;10(6):e0128914
pubmed: 26087130
Soil Tillage Res. 2018 Oct;182:57-65
pubmed: 30283161
Glob Chang Biol. 2016 Mar;22(3):1008-28
pubmed: 26301476
J Biomech. 2016 Jun 14;49(9):1802-1811
pubmed: 27155747
Ecol Appl. 2017 Apr;27(3):1001-1009
pubmed: 28112848
Plant Soil. 2017;421(1):19-30
pubmed: 31997836
Sci Rep. 2016 Jan 25;6:20018
pubmed: 26804897
Environ Sci Technol. 2011 Jan 15;45(2):425-31
pubmed: 21121599
Glob Chang Biol. 2016 Sep;22(9):3141-56
pubmed: 27152862
Sci Total Environ. 2019 Feb 20;652:523-537
pubmed: 30368182

Auteurs

Katharina Meurer (K)

Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden.

Jennie Barron (J)

Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden.

Claire Chenu (C)

UMR Ecosys INRA-AgroParisTech, Université Paris-Saclay, Thiverval-Grignon, France.

Elsa Coucheney (E)

Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden.

Matthew Fielding (M)

Stockholm Environment Institute, SIANI-SEI, Stockholm, Sweden.

Paul Hallett (P)

School of Biological Sciences, University of Aberdeen, Aberdeen, UK.

Anke M Herrmann (AM)

Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden.

Thomas Keller (T)

Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden.
Agroecology and Environment, Agroscope, Zürich, Switzerland.

John Koestel (J)

Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden.
Agroecology and Environment, Agroscope, Zürich, Switzerland.

Mats Larsbo (M)

Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden.

Elisabet Lewan (E)

Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden.

Dani Or (D)

Environmental Systems Science, ETH, Zürich, Switzerland.

David Parsons (D)

Agricultural Research for Northern Sweden, Swedish University of Agricultural Sciences, Umeå, Sweden.

Nargish Parvin (N)

Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden.

Astrid Taylor (A)

Ecology, Swedish University of Agricultural Sciences, Uppsala, Sweden.

Harry Vereecken (H)

Bio- and Geo-Sciences-Agrosphere, Forschungszentrum Jülich, Jülich, Germany.

Nicholas Jarvis (N)

Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden.

Articles similaires

Robotic Surgical Procedures Animals Humans Telemedicine Models, Animal

Odour generalisation and detection dog training.

Lyn Caldicott, Thomas W Pike, Helen E Zulch et al.
1.00
Animals Odorants Dogs Generalization, Psychological Smell
Animals TOR Serine-Threonine Kinases Colorectal Neoplasms Colitis Mice
Animals Tail Swine Behavior, Animal Animal Husbandry

Classifications MeSH