Rescue of a severely bottlenecked wolf (Canis lupus) population by a single immigrant

Vilà, Carles, Sundqvist, Anna Karin, Flagstad, Øystein, Seddon, Jennifer, Björnerfeldt, Susanne, Kojola, Ilpo, Casulli, Adriano, Sand, Håkan, Wabakken, Petter, and Ellegren, Hans (2003) Rescue of a severely bottlenecked wolf (Canis lupus) population by a single immigrant. Philosophical Transactions of the Royal Society B: Biological Sciences, 270 (1510). pp. 91-97.

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Abstract

The fragmentation of populations is an increasingly important problem in the conservation of endangered species. Under these conditions, rare migration events may have important effects for the rescue of small and inbred populations. However, the relevance of such migration events to genetically depauperate natural populations is not supported by empirical data. We show here that the genetic diversity of the severely bottlenecked and geographically isolated Scandinavian population of grey wolves (Canis lupus), founded by only two individuals, was recovered by the arrival of a single immigrant. Before the arrival of this immigrant, for several generations the population comprised only a single breeding pack, necessarily involving matings between close relatives and resulting in a subsequent decline in individual heterozygosity. With the arrival of just a single immigrant, there is evidence of increased heterozygosity, significant outbreeding (inbreeding avoidance), a rapid spread of new alleles and exponential population growth. Our results imply that even rare interpopulation migration can lead to the rescue and recovery of isolated and endangered natural populations.

Item ID: 90181
Item Type: Article (Research - C1)
ISSN: 1471-2970
Keywords: Bottleneck, Founding effect, Genetic rescue, Migration, Scandinavia, Wolf
Copyright Information: © 2002 The Royal Society.
Date Deposited: 05 Jan 2026 01:38
FoR Codes: 31 BIOLOGICAL SCIENCES > 3105 Genetics > 310510 Molecular evolution @ 100%
SEO Codes: 28 EXPANDING KNOWLEDGE > 2801 Expanding knowledge > 280102 Expanding knowledge in the biological sciences @ 100%
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