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.

Population structure of African buffalo inferred from mtDNA sequences and microsatellite loci: high variation but low differentiation

Domaine:

environment and energy
Créateur:
BO HANPET
Éditeur:
WILEY
Hôte:
The African buffalo ( Syncerus caffer ) is widespread throughout sub‐Saharan Africa and is found in most major vegetation types, wherever permanent sources of water are available, making it physically able to disperse through a wide range of habitats. Despite this, the buffalo has been assumed to be strongly philopatric and to form large aggregations that remain within separate home ranges with little interchange between units, but the level of differentiation within the species is unknown. Genetic differences between populations were assessed using mitochondrial DNA (control region) sequence data and analysis of variation at six microsatellite loci among 11 localities in eastern and southern Africa. High levels of genetic variability were found, suggesting that reported severe population bottlenecks due to outbreak of rinderpest during the last century did not strongly reduce the genetic variability within the species. The high level of genetic variation within the species was found to be evenly distributed among populations and only at the continental level were we able to consistently detect significant differentiation, contrasting with the assumed philopatric behaviour of the buffalo. Results of mtDNA and microsatellite data were found to be congruent, disagreeing with the alleged male‐biased dispersal. We propose that the observed pattern of the distribution of genetic variation between buffalo populations at the regional level can be caused by fragmentation of a previous panmictic population due to human activity, and at the continental level, reflects an effect of geographical distance between populations.

Visit

doi.org

Licenses

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

Similaires

History of Click-Speaking Populations of Africa Inferred from mtDNA and Y Chromosome Genetic VariationVariation at 10 protein coding loci in the mbenzele pygmies from the central african republic and a comparison with microsatellite dataGenetic variation and population structure of Sudanese populations as indicated by 15 Identifiler sequence-tagged repeat (STR) lociEvaluation of Variation in Control Region Sequences for Hispanic Individuals in the SWGDAM mtDNA Data SetAllele Frequencies For 20 Autosomal Microsatellite Loci In The Kenyan PopulationPopulation Structure And Diversity Among Improved Cowpea Varieties From Senegal Based On Microsatellite Markers

History of Click-Speaking Populations of Africa Inferred from mtDNA and Y Chromosome Genetic Variation

Variation at 10 protein coding loci in the mbenzele pygmies from the central african republic and a comparison with microsatellite data

Abstract Ten protein coding loci (6‐PGD, A1‐AT, ACP1, CaII, ESD, GC, GPX1, Hbβ, PGM1, and TF) were

Genetic variation and population structure of Sudanese populations as indicated by 15 Identifiler sequence-tagged repeat (STR) loci

Abstract Background There is substantial ethnic, cultural and linguistic diversity among the peop

Evaluation of Variation in Control Region Sequences for Hispanic Individuals in the SWGDAM mtDNA Data Set

ABSTRACT: The Scientific Working Group on DNA Analysis Methods (SWGDAM) Hispanic data set was anal

Allele Frequencies For 20 Autosomal Microsatellite Loci In The Kenyan Population

Abstract Samples from 180 unrelated persons of Kenyan descent collected at a DNA testing f

Population Structure And Diversity Among Improved Cowpea Varieties From Senegal Based On Microsatellite Markers

Cowpea (Vigna unguiculata) is used in West Africa for both human consumption and animal feeding. Des