ArticleBiological reviews of the Cambridge Philosophical Society2021
Tectonics, climate and the diversification of the tropical African terrestrial flora and fauna.
Article in Biological reviews of the Cambridge Philosophical Society, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 54 papers, 1 of them a synthesis that pooled it.
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Who cites it
54 citing papers in PubMed, 1 synthesis or guideline pooled it.
- Evaluating the African arid corridor hypothesis: A meta-analysis including the phylogenetic and biogeographical history of Sesamothamnus.American journal of botany · 2026Pooled it
- Macroevolutionary dynamics and predictors of tropical rain forest plant diversity.Science advances · 2026Article
- From forests to deserts: Sequencing of the giant forest hog completes the genomic history of the African suids.iScience · 2026Article
- The origin and development of the Miocene northwest African savanna.Proceedings of the National Academy of Sciences of the United States of America · 2026Article
- Lower speciation, not higher extinction, drove African megaherbivore diversity collapse.Nature communications · 2026Article
- Reconsidering Whether Knuckle-Walking Gave Rise to Bipedalism in Light of the Extended Evolutionary Synthesis.American journal of biological anthropology · 2026Review
- Plastid and nuclear phylogenomics of Cyphostemma (Vitaceae) provide new insights into genome size evolution across sub-Saharan Africa.Journal of integrative plant biology · 2026Article
- Pleistocene Forest Stability Predicts Patterns of Frog Diversity in Central Africa.Ecology and evolution · 2026Article
- Adaptation of plateau frog peptide: From antimicrobial to angiogenic and proliferative functions.Journal of advanced research · 2026Article
- Two new species ofPhytoKeys · 2026Article
- A Multi-Evidence Approach to the Systematics of the GenusInternational journal of molecular sciences · 2025Article
- Woody plants composition, structure and regeneration status of Muger Zala natural forest, Central Ethiopia.Scientific reports · 2025Article
- Evidence of high genetic differentiation driven by limited gene flow in a lower canopy African tropical rainforest tree species, Coula edulis Baill. (Coulaceae).BMC ecology and evolution · 2025Article
- A synthesized framework for the evolutionary origins of avian obligate brood parasitism.Science advances · 2025Article
- Patterns and Geographical Mechanism of Altitudinal Belts in Tropical African Mountains.Ecology and evolution · 2025Article
- East African uplift as a catalyst for Middle Miocene faunal transitions.Science advances · 2025Article
- Investigating primate densities and human-primate conflict in Tembaro Community Conserved Forest, Omo River Basin, Ethiopia.BMC zoology · 2025Article
- Plio-Pleistocene Climatic Fluctuations and Divergence With Gene Flow Drive Continent-Wide Diversification in an African Bird.Molecular ecology · 2025Article
- Global Species Diversity Patterns of Polypodiaceae Under Future Climate Changes.Plants (Basel, Switzerland) · 2025Article
- Drivers of diversification in sharks and rays (Chondrichthyes: Elasmobranchii).Frontiers in ecology and evolution · 2025Article
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26 authors.
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Abstract
Tropical Africa is home to an astonishing biodiversity occurring in a variety of ecosystems. Past climatic change and geological events have impacted the evolution and diversification of this biodiversity. During the last two decades, around 90 dated molecular phylogenies of different clades across animals and plants have been published leading to an increased understanding of the diversification and speciation processes generating tropical African biodiversity. In parallel, extended geological and palaeoclimatic records together with detailed numerical simulations have refined our understanding of past geological and climatic changes in Africa. To date, these important advances have not been reviewed within a common framework. Here, we critically review and synthesize African climate, tectonics and terrestrial biodiversity evolution throughout the Cenozoic to the mid-Pleistocene, drawing on recent advances in Earth and life sciences. We first review six major geo-climatic periods defining tropical African biodiversity diversification by synthesizing 89 dated molecular phylogeny studies. Two major geo-climatic factors impacting the diversification of the sub-Saharan biota are highlighted. First, Africa underwent numerous climatic fluctuations at ancient and more recent timescales, with tectonic, greenhouse gas, and orbital forcing stimulating diversification. Second, increased aridification since the Late Eocene led to important extinction events, but also provided unique diversification opportunities shaping the current tropical African biodiversity landscape. We then review diversification studies of tropical terrestrial animal and plant clades and discuss three major models of speciation: (i) geographic speciation via vicariance (allopatry); (ii) ecological speciation impacted by climate and geological changes, and (iii) genomic speciation via genome duplication. Geographic speciation has been the most widely documented to date and is a common speciation model across tropical Africa. We conclude with four important challenges faced by tropical African biodiversity research: (i) to increase knowledge by gathering basic and fundamental biodiversity information; (ii) to improve modelling of African geophysical evolution throughout the Cenozoic via better constraints and downscaling approaches; (iii) to increase the precision of phylogenetic reconstruction and molecular dating of tropical African clades by using next generation sequencing approaches together with better fossil calibrations; (iv) finally, as done here, to integrate data better from Earth and life sciences by focusing on the interdisciplinary study of the evolution of tropical African biodiversity in a wider geodiversity context.
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