4.3 Article

Low Persistence of Genetic Rescue Across Generations in the Arctic Fox (Vulpes lagopus)

期刊

JOURNAL OF HEREDITY
卷 112, 期 3, 页码 276-285

出版社

OXFORD UNIV PRESS INC
DOI: 10.1093/jhered/esab011

关键词

conservation; gene flow; genetic rescue; genetic sweep; inbreeding

资金

  1. Swedish Research Council FORMAS [2015-1526]
  2. EU Life to SEFALO+
  3. EU/Interreg Sweden Norway [20200939]
  4. WWF
  5. Fjallraven AB

向作者/读者索取更多资源

The study found that natural genetic rescue in a small population of Scandinavian Arctic foxes did not lead to elevated fitness in immigrant F2 and F3 compared to native inbred foxes, and the overall inbreeding levels showed an increasing trend. Continuous gene flow may be crucial for the long-term recovery and persistence of small and threatened populations.
Genetic rescue can facilitate the recovery of small and isolated populations suffering from inbreeding depression. Long-term effects are however complex, and examples spanning over multiple generations under natural conditions are scarce. The aim of this study was to test for long-term effects of natural genetic rescue in a small population of Scandinavian Arctic foxes (Vulpes lagopus). By combining a genetically verified pedigree covering almost 20 years with a long-term dataset on individual fitness (n = 837 individuals), we found no evidence for elevated fitness in immigrant F2 and F3 compared to native inbred foxes. Population inbreeding levels showed a fluctuating increasing trend and emergence of inbreeding within immigrant lineages shortly after immigration. Between 0-5 and 6-9 years post immigration, the average number of breeding adults decreased by almost 22% and the average proportion of immigrant ancestry rose from 14% to 27%. Y chromosome analysis revealed that 2 out of 3 native male lineages were lost from the gene pool, but all founders represented at the time of immigration were still contributing to the population at the end of the study period through female descendants. The results highlight the complexity of genetic rescue and suggest that beneficial effects can be brief. Continuous gene flow may be needed for small and threatened populations to recover and persist in a longer time perspective.

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