Genomic legacy of migration in endangered caribou

PLoS Genet. 2022 Feb 10;18(2):e1009974. doi: 10.1371/journal.pgen.1009974. eCollection 2022 Feb.

Abstract

Wide-ranging animals, including migratory species, are significantly threatened by the effects of habitat fragmentation and habitat loss. In the case of terrestrial mammals, this results in nearly a quarter of species being at risk of extinction. Caribou are one such example of a wide-ranging, migratory, terrestrial, and endangered mammal. In populations of caribou, the proportion of individuals considered as "migrants" can vary dramatically. There is therefore a possibility that, under the condition that migratory behavior is genetically determined, those individuals or populations that are migratory will be further impacted by humans, and this impact could result in the permanent loss of the migratory trait in some populations. However, genetic determination of migration has not previously been studied in an endangered terrestrial mammal. We examined migratory behavior of 139 GPS-collared endangered caribou in western North America and carried out genomic scans for the same individuals. Here we determine a genetic subdivision of caribou into a Northern and a Southern genetic cluster. We also detect >50 SNPs associated with migratory behavior, which are in genes with hypothesized roles in determining migration in other organisms. Furthermore, we determine that propensity to migrate depends upon the proportion of ancestry in individual caribou, and thus on the evolutionary history of its migratory and sedentary subspecies. If, as we report, migratory behavior is influenced by genes, caribou could be further impacted by the loss of the migratory trait in some isolated populations already at low numbers. Our results indicating an ancestral genetic component also suggest that the migratory trait and their associated genetic mutations could not be easily re-established when lost in a population.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animal Migration / physiology*
  • Animals
  • Behavior, Animal / physiology
  • Biological Evolution
  • Conservation of Natural Resources / methods
  • Ecology / methods
  • Ecosystem
  • Endangered Species / statistics & numerical data
  • Female
  • Genome / genetics*
  • Genomics / methods
  • Haplotypes
  • North America
  • Phenotype
  • Polymorphism, Single Nucleotide / genetics
  • Reindeer / genetics*
  • Sequence Analysis, DNA / methods

Grants and funding

This work was supported by a student grant administered by Alberta Conservation Association (recipient MC, 2016 Award Recipient, http://www.acabiodiversity.ca/). The project (lead by MM) was funded by NSERC, www.nserc-crsng.gc.ca (recipient MM; RGPIN-2020-05286 and CRDPJ-538213-18-2019-2020) with matching by Alberta Innovates (recipient MM), Alberta Upstream Petroleum Research Fund (recipient MM), Canadian Association of Petroleum Producers (recipient MM), Canada's Oil Sands Innovation Alliance (recipient MM), Conoco-Phillips (recipient MM), Exxon (recipient MM), Teck Resources (recipient MM). In-kind contributions to the projects were made by the Governments of British Columbia, Alberta, Northwest Territories, and Yukon, and by Parks Canada. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.