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PMID: 18854856 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Population fragmentation leads to isolation by distance but not genetic impoverishment in the philopatric Lesser Kestrel: a comparison with the widespread and sympatric Eurasian Kestrel.

Heredity ·Vol. 102 ·No. 2 ·2009-02-00 ·Pages 190-8

Alcaide M, Serrano D, Negro JJ, Tella JL, Laaksonen T, Müller C, Gal A, Korpimäki E

Abstract

Population fragmentation is a widespread phenomenon usually associated with human activity. As a result of habitat transformation, the philopatric and steppe-specialist Lesser Kestrel Falco naumanni underwent a severe population decline during the last century that increased population fragmentation throughout its breeding range. In contrast, the ubiquitous Eurasian Kestrel Falco tinnunculus did not suffer such adverse effects, its breeding range still remaining rather continuous. Using microsatellites, we tested the effects of population fragmentation on large-scale spatial patterns of genetic differentiation and diversity by comparing these two sympatric and phylogenetically related species. Our results suggest that habitat fragmentation has increased genetic differentiation between Lesser Kestrel populations, following an isolation-by-distance pattern, while the population of Eurasian Kestrels is panmictic. Contrary to expectations, we did not detect significant evidence of reduced genetic variation or increased inbreeding in Lesser Kestrels. Although this study reports genetic differentiation in a species that has potential for long-distance dispersal but philopatry-limited gene flow, large enough effective population sizes and migration may have been sufficient to mitigate genetic depauperation. A serious reduction of genetic diversity in Lesser Kestrels would, therefore, only be expected after severe population bottlenecks following extreme geographic isolation.

MeSH Terms
Animal Migration Animal Population Groups/genetics Animals Breeding Falconiformes/genetics Genetic Variation Microsatellite Repeats Population Dynamics
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Alcaide M
Departamentos de Ecología Evolutiva y Biología de la Conservación, Estación Biológica de Doñana, CSIC, Sevilla, Spain. [email protected]
Serrano D
Negro J J
Tella J L
Laaksonen T
Müller C
Gal A
Korpimäki E
Article Info
Journal
Heredity
Abbr.
Heredity (Edinb)
ISSN
1365-2540
Published
2009-02-00
Epub
2008-00-15
Pages
190-8
Language
English
Region
England
NLM ID
0373007
Subset
IM
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