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PMID: 22320891 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Spatial and temporal patterns of neutral and adaptive genetic variation in the endangered African wild dog (Lycaon pictus).

Molecular ecology ·Vol. 21 ·No. 6 ·2012-03-00 ·Pages 1379-93

Marsden CD, Woodroffe R, Mills MG, McNutt JW, Creel S, Groom R, Emmanuel M, Cleaveland S, Kat P, Rasmussen GS, Ginsberg J, Lines R, André JM, Begg C, Wayne RK, Mable BK

Abstract

Deciphering patterns of genetic variation within a species is essential for understanding population structure, local adaptation and differences in diversity between populations. Whilst neutrally evolving genetic markers can be used to elucidate demographic processes and genetic structure, they are not subject to selection and therefore are not informative about patterns of adaptive variation. As such, assessments of pertinent adaptive loci, such as the immunity genes of the major histocompatibility complex (MHC), are increasingly being incorporated into genetic studies. In this study, we combined neutral (microsatellite, mtDNA) and adaptive (MHC class II DLA-DRB1 locus) markers to elucidate the factors influencing patterns of genetic variation in the African wild dog (Lycaon pictus); an endangered canid that has suffered extensive declines in distribution and abundance. Our genetic analyses found all extant wild dog populations to be relatively small (N(e)  < 30). Furthermore, through coalescent modelling, we detected a genetic signature of a recent and substantial demographic decline, which correlates with human expansion, but contrasts with findings in some other African mammals. We found strong structuring of wild dog populations, indicating the negative influence of extensive habitat fragmentation and loss of gene flow between habitat patches. Across populations, we found that the spatial and temporal structure of microsatellite diversity and MHC diversity were correlated and strongly influenced by demographic stability and population size, indicating the effects of genetic drift in these small populations. Despite this correlation, we detected signatures of selection at the MHC, implying that selection has not been completely overwhelmed by genetic drift.

MeSH Terms
Africa Animals Animals, Wild/genetics Canidae/genetics DNA, Mitochondrial/genetics Endangered Species Gene Frequency Genetic Drift Genetic Variation Genetics, Population Histocompatibility Antigens Class II/genetics Microsatellite Repeats Molecular Sequence Data Selection, Genetic Sequence Analysis, DNA
Chemicals
DNA, Mitochondrial Histocompatibility Antigens Class II
Authors & Affiliations
16 authors, click to expand affiliations / ORCID
Marsden Clare D
Institute of Biodiversity, Animal Health & Comparative Medicine, University of Glasgow, Glasgow, UK. [email protected]
Woodroffe Rosie
Mills Michael G L
McNutt J Weldon
Creel Scott
Groom Rosemary
Emmanuel Masenga
Cleaveland Sarah
Kat Pieter
Rasmussen Gregory S A
Ginsberg Joshua
Lines Robin
André Jean-Marc
Begg Colleen
Wayne Robert K
Mable Barbara K
Article Info
Journal
Molecular ecology
Abbr.
Mol Ecol
ISSN
1365-294X
Published
2012-03-00
Epub
2012-00-09
Pages
1379-93
Language
English
Region
England
NLM ID
9214478
Subset
IM
Databases
GENBANK
JQ085963, JQ085964, JQ282681, JQ282682, JQ282683, JQ282684, JQ282685, JQ282686, JQ282687, JQ282688, JQ282689, JQ282690
Corrections
ErratumIn
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