Site-specific properties and irreversible vegetation changes in semi-arid grazing systems
Publication date
1997
Authors
Rietkerk, M.G.
Bosch, F. van den
Koppel, J. van de
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Document Type
Article
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Abstract
There is an urgent need to develop a mechanistic understanding of how site-specific
properties can lead to irreversible vegetation changes. We show, by means of a
bifurcation analysis of two mathematica1 models, how site-specific properties determine
the resilience of vegetation changes in semi-arid grazing systems. The models
predict that if available soil water limits plant growth, the vegetation supported by
sandy soils is generally resilient to herbivore impact and rainfall fluctuations, unlike
the vegetation on clayey soils. This depends on the capacity of vegetation communities
to improve the structural and water-holding capacities of the soil. In contrast, if
plant growth is nutrient limited, vegetation on sandy soils is generally not resilient to
herbivore impact and fluctuations in external nutrient input, unlike the vegetation
supported by clayey soils. This is affected by the nutrient retention capacity of
vegetation communities. We stress the applicability of the general theory provided by
this model to the Sahel environment. The model predictions are consistent with field
observations documented in the literature.