Publications des scientifiques de l'IRD

Pot V., Portell X., Otten W., Garnier P., Monga Olivier, Baveye P. C. (2022). Accounting for soil architecture and microbial dynamics in microscale models : current practices in soil science and the path ahead. European Journal of Soil Science, 73 (1), e13142 [23 p.]. ISSN 1351-0754.

Titre du document
Accounting for soil architecture and microbial dynamics in microscale models : current practices in soil science and the path ahead
Année de publication
2022
Type de document
Article référencé dans le Web of Science WOS:000675259700001
Auteurs
Pot V., Portell X., Otten W., Garnier P., Monga Olivier, Baveye P. C.
Source
European Journal of Soil Science, 2022, 73 (1), e13142 [23 p.] ISSN 1351-0754
Macroscopic models of soil organic matter (SOM) turnover have faced difficulties in reproducing SOM dynamics or in predicting the spatial distribution of carbon stocks. These models are based on a largely inadequate linear response of soil microorganisms to bulk concentrations of nutrients and it is clear that a new approach to SOM modelling is required. Introducing explicit microbial activity and organic matter (OM) reactivity in macroscopic models represents a challenge because of the fine spatial scales at which the processes occur. To get a better grasp on interactions that take place at the microscale, a new generation of SOM models have been developed at the spatial scale of the soil microenvironments where microorganisms evolve. These models are well adapted to challenge traditional hypotheses about the influence of soil architecture on soil microbial activity. Soil architecture provides the stage for a dynamic spatial accessibility of resources to microbes and the emergence of interactions between the actors in SOM decomposition. In this context, we review microscale models of microbial activity that have been designed for soils and soil analogues. To understand how these models account for spatial accessibility, we look in detail at how soil microenvironments are described in the different approaches and how microbial colonies are spatialized in these microenvironments. We present the advantages and disadvantages of the developed strategies and we discuss their limits. Highlights We review the state of the art in the development of microscale models of soil microbial processes. Microscale models have integrated the tremendous progress in knowledge of OM cycling in soils. We categorize modelling approaches by how they deal with complexity of soil architecture. Modelling benchmarks are required to properly balance complexity and data uncertainty.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Pédologie [068] ; Biologie du sol [074]
Localisation
Fonds IRD [F B010082572]
Identifiant IRD
fdi:010082572
Contact