Untangling the environmental drivers of gross primary productivity in African rangelands

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Abstract

Precipitation variability is forecast to increase under climate change but its impacts on vegetation productivity are complex. Here, we use generalised additive models and remote sensing-derived datasets to quantify the effect of precipitation amount, distribution, and intensity on the gross primary productivity of dry rangelands across sub-Saharan Africa from 2000 to 2019 and differentiate these effects from other variables. We find that total precipitation is the primary driver of productivity, but that more variable rainfall has a small negative effect across vegetation types and rainfall regimes. Temperature and soil nitrogen also have strong effects, especially in drier rangelands. Shrublands and grasslands are more sensitive to environmental variability than savannas. Our findings support a model in which the main constraints on productivity are maintenance of soil moisture and minimisation of plant water stress. This highlights the risks of climate warming and increasing variability for productivity in water-limited grass and shrublands but suggests savannas may have greater resilience in Africa.

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Lomax, G. A., Powell, T. W. R., Lenton, T. M., Economou, T., & Cunliffe, A. M. (2024). Untangling the environmental drivers of gross primary productivity in African rangelands. Communications Earth and Environment, 5(1). https://doi.org/10.1038/s43247-024-01664-5

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