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  5. ES1406 COST Action: Soil fauna: Key to Soil Organic Matter Dynamics and Fertility. How far have we got?

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Article
English
2018

ES1406 COST Action: Soil fauna: Key to Soil Organic Matter Dynamics and Fertility. How far have we got?

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English
2018
EGUGA

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Davey L Jones
Davey L Jones

Bangor University

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Juan J. Jiménez
Juliane Filser
Sébastien Barot
+28 more

Abstract

Soil organic matter (SOM) is key to soil fertility, climate change mitigation, combatting land degradation, and the conservation of above- and below-ground biodiversity and associated ecosystem services like decomposition, nutrient cycling, carbon sequestration, detoxification and maintenance of soil physico-chemical properties. SOM dynamics represent the balance between the input of plant material (residues, root-derived materials) and the output through decomposition (OM mineralization) by organisms, erosion and leaching. Approximately 20% of global CO2 emissions, one third of global CH4 emissions and two thirds of N2O emissions originate from soils. In many soils, most of the macro-aggregate structure is formed by the activities of soil invertebrates and roots, with important consequences for soil organic matter dynamics, carbon sequestration and water infiltration at several spatial and temporal scales. Current models of SOM dynamics are defined in terms of plant residues input and microbial decomposition, overlooking the important contribution of soil fauna. The composition and activity of soil fauna greatly vary with respect to climate and land use. SOM modelling has thus far largely ignored soil fauna due to various reasons: i) hardly existing communication between [C flow centered] biogeochemistry and [organism-centered] soil ecology, ii) lack of [awareness of] data on soil animals (both in the field and from labora-tory experiments) and, iii) two different visions by soil ecologists: foodweb vs. self-organization. An international interdisciplinary approach (COST Action ES1406) is the proper platform for both experimentalists and modellers to discuss and provide solutions. This Action has fostered networking and collaboration for improved SOM mod-els by implementing the role of the soil fauna as a basis for sustainable soil management. Key challenges in SOM management, soil fauna and modelling will be addressed and how far have we got thus far to meet the objectives of this Action.

How to cite this publication

Juan J. Jiménez, Juliane Filser, Sébastien Barot, Matty P. Berg, María J.I. Briones, Kevin R. Butt, Jorge Curiel Yuste, Gaby Deckmyn, Xavier Domene, J.H. Faber, Beat Frey, Aline Frossard, Jan Frouz, Tine Grebenc, Georg Guggenberger, Davorka K. Hackenberger, Maria Iamandei, Davey L Jones, Monika Joschko, Paul Henning Krogh, Patrick Lavelle, Juha Mikola, Visa Nuutinen, Maarja Öpik, Pascal Querner, Daniel P. Rasse, Olaf Schmidt, Adriano Sofo, José Paulo Sousa, Alexei V. Tiunov, Karen Vancampenhout (2018). ES1406 COST Action: Soil fauna: Key to Soil Organic Matter Dynamics and Fertility. How far have we got?. EGUGA

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Publication Details

Type

Article

Year

2018

Authors

31

Datasets

0

Total Files

0

Language

English

Journal

EGUGA

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