Abstract:
Tropical savanna species influence ecosystem multifunctionality through the ecological
mechanisms underlying the provision of multiple ecosystem services. Despite this
functionality, anthropogenic factors such as deforestation, overexploitation of natural
resources, extension of agricultural lands, overgrazing, and bushfires, coupled with the adverse
effects of climate change, contribute to the loss of Detarium microcarpum. Within this context,
this study aimed to contribute to the sustainable management and conservation of D.
microcarpum in Burkina Faso. To achieve these goals, the methods have consisted of semistructured
and focus group surveys of 465 people, 165 plots for forest inventories, tree rings
and wood anatomy analysis, allometric equation and species modelling. The local population
highlights the multipurpose uses of Detarium species and reveals the threats of the species are
linked to the type of uses and the status of the site. A total of 102 woody species belonging to
79 genera rang in 28 families, were found in the natural habitats of D. microcarpum. The
structure analysis reveals the unstable population of the species and the lack of regeneration.
D. microcarpum showed distinct growth ring boundaries, the annual radial growth is positively
related to precipitation during the end of the rainy for the current years but negatively to the
previous years. Tree ring analysis revealed annual growth ring boundaries were 1.034 ± 0.425
mm. year-1. The above-ground biomass and above-ground carbon allocation are greater in the
Sudano-Sahelian than in the Sudanian climatic zone. The allometric models established to
predict D. microcarpum biomass were TAGB = e4.4002 (dbh*dbh*h) 0.9456 + e-3.5219 (dbh)2.4007 + e-
2.8845(dbh)1.3465 in the Sudanian zone and TAGB = e-4.1053 (dbh)2.4222 + e-5.2567(dbh)2.9539 + e-
2.9894(dbh)1.5285 for the Sudano-Sahelian climatic zone. The current suitability area for the species
covers 65.6 % of the country area with respectively high suitability (36.73%) and low
suitability (29.16%). Models projections indicate that highly suitable areas for Detarium
microcarpum conservation are expected to decline under future climate change scenarios,
regardless of the models used. The only exception is the MIROC6 model under the SSP5-8.5
scenario, which predicts a slight expansion of suitable habitats. The shift was observed from
both unsuitable and highly suitable areas to the low-suitability areas in the model results across
all climatic zones, with a notable progression in the Sahelian zone. Overall, this study provides
important information for the sustainable use of D. microcarpum and the conservation guide
for forest practices.
Description:
A Thesis submitted to the West African Science Service Centre on Climate Change and Adapted Land Use and the Université Félix Houphouët-Boigny, Côte d’Ivoire, in partial fulfillment of the requirements for the degree of Master of Science Degree in Climate Change and Biodiversity