Agriculture affects genetic diversity and functional connectivity in an ecologically flexible West African primate

Abstract Land-use changes in West Africa are threatening wildlife viability, yet their impacts on species’ genetic diversity and connectivity remain poorly understood. We investigated the environmental drivers of genetic diversity and functional connectivity in the Near Threatened Guinea baboon ( Papio papio ) by genotyping 243 non-invasively collected faecal samples across its range and applying a landscape genetics framework. We identified distinct genetic clusters, with Gambian populations exhibiting the lowest genetic diversity and highest inbreeding. Genetic diversity was positively associated with shrublands and forest-savannah mosaics, highlighting the importance of these habitats for maintaining viable populations. Rivers, grasslands, and shrublands facilitate functional connectivity and act as dispersal corridors, whereas large waterbodies and intensive croplands serve as strong barriers. Notably, habitats constituted by mosaics of forest and croplands provide more permeable barriers to movement than strict monocultures. Our results suggest that intensive agricultural land use can reduce functional connectivity, whereas heterogeneous natural habitats and riverine networks sustain it. To ensure the long-term survival of Guinea baboons, conservation strategies must prioritize preserving riverine corridors and habitat heterogeneity. Furthermore, replacing monoculture farming with agroecological practices like agroforestry is crucial to support landscape connectivity and mitigate the adverse effects of agricultural expansion.

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Publication Details

Journal
Heredity
Published
2026-09-26
DOI
https://doi.org/10.1038/s41437-026-00880-3
Primary Topic
Primate Behavior and Ecology
Type
article
Field-Weighted Citation Impact
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article

Agriculture affects genetic diversity and functional connectivity in an ecologically flexible West African primate

Raquel Godinho, Cristian Pizzigalli, Orly Razgour, Tânia Minhós et al.
Heredity
Primate Behavior and Ecology
article

Agriculture affects genetic diversity and functional connectivity in an ecologically flexible West African primate

Raquel Godinho, Cristian Pizzigalli, Orly Razgour, Tânia Minhós, Dietmar P. Zinner, José Carlos Brito, Helena Teixeira, Filipa Borges, Francesco Vittori, Tom L. Jenkins, Andack Saad Sow, Cecilia Montauban, María Joana Ferreira da Silva, Hamidou Dieng, Saidil Lamine Djaló, Nelson Fernandes, Ricardo Rocha, Mariama Sanneh, Victor Silva, Clive Barlow, Ahmed Tidjane Diop, Gisela H. Kopp, Isa Aleixo-Pais
article en

Abstract

Abstract Land-use changes in West Africa are threatening wildlife viability, yet their impacts on species’ genetic diversity and connectivity remain poorly understood. We investigated the environmental drivers of genetic diversity and functional connectivity in the Near Threatened Guinea baboon ( Papio papio ) by genotyping 243 non-invasively collected faecal samples across its range and applying a landscape genetics framework. We identified distinct genetic clusters, with Gambian populations exhibiting the lowest genetic diversity and highest inbreeding. Genetic diversity was positively associated with shrublands and forest-savannah mosaics, highlighting the importance of these habitats for maintaining viable populations. Rivers, grasslands, and shrublands facilitate functional connectivity and act as dispersal corridors, whereas large waterbodies and intensive croplands serve as strong barriers. Notably, habitats constituted by mosaics of forest and croplands provide more permeable barriers to movement than strict monocultures. Our results suggest that intensive agricultural land use can reduce functional connectivity, whereas heterogeneous natural habitats and riverine networks sustain it. To ensure the long-term survival of Guinea baboons, conservation strategies must prioritize preserving riverine corridors and habitat heterogeneity. Furthermore, replacing monoculture farming with agroecological practices like agroforestry is crucial to support landscape connectivity and mitigate the adverse effects of agricultural expansion.

Heredity
Zero hunger
Openalex Percentile: Top 7%
Primate Behavior and Ecology
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