Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Rooting depth as a key woody functional trait in savannas

Domaine:

environment and energy
Créateur:
YonBenMadCor
Éditeur:
WILEY
Hôte:
Summary Dimensions of tree root systems in savannas are poorly understood, despite being essential in resource acquisition and post‐disturbance recovery. We studied tree rooting patterns in Southern African savannas to ask: how tree rooting strategies affected species responses to severe drought; and how potential rooting depths varied across gradients in soil texture and rainfall. First, detailed excavations of eight species in Kruger National Park suggest that the ratio of deep to shallow taproot diameters provides a reasonable proxy for potential rooting depth, facilitating extensive interspecific comparison. Detailed excavations also suggest that allocation to deep roots traded off with shallow lateral root investment, and that drought‐sensitive species rooted more shallowly than drought‐resistant ones. More broadly across 57 species in Southern Africa, potential rooting depths were phylogenetically constrained, with investment to deep roots evident among miombo Detarioids, consistent with results suggesting they green up before onset of seasonal rains. Soil substrate explained variation, with deeper roots on sandy, nutrient‐poor soils relative to clayey, nutrient‐rich ones. Although potential rooting depth decreased with increasing wet season length, mean annual rainfall had no systematic effect on rooting depth. Overall, our results suggest that rooting depth systematically structures the ecology of savanna trees. Further work examining other anatomical and physiological root traits should be a priority for understanding savanna responses to changing climate and disturbances.

Visit

doi.org

Licenses

http://onlinelibrary.wiley.com/termsAndConditions#vor

Similaires

Patterns in Woody Vegetation Structure across African SavannasFarmlands Feature Greater Woody Cover than Savannas in Semi-Arid West AfricaObservations of a seasonal cycle in NO<sub>x</sub> emissions from fires in African woody savannasPresentation_1_Toward Operational Mapping of Woody Canopy Cover in Tropical Savannas Using Google Earth Engine.pdfNutritional functional trait diversity of crops in south‐eastern SenegalBovine tuberculosis disturbs parasite functional trait composition in African buffalo

Patterns in Woody Vegetation Structure across African Savannas

Abstract. Vegetation structure in water-limited systems is to a large degree controlled by ecohydrol

Farmlands Feature Greater Woody Cover than Savannas in Semi-Arid West Africa

Woody vegetation in farmland acts as a carbon sink and provides ecosystem services for local people,

Observations of a seasonal cycle in NO<sub>x</sub> emissions from fires in African woody savannas

Nitrogen oxide (NO x ) emissions from wildfires account for ~15% of the global total, inducing large

Presentation_1_Toward Operational Mapping of Woody Canopy Cover in Tropical Savannas Using Google Earth Engine.pdf

Savanna woody plants can store significant amounts of carbon while also providing numerous other

Nutritional functional trait diversity of crops in south‐eastern Senegal

Abstract Ecological trait diversity metrics have been used to highlight the impacts of agricu

Bovine tuberculosis disturbs parasite functional trait composition in African buffalo

Novel parasites can have wide-ranging impacts, not only on host populations, but also on the residen