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The evolution of white-tailed jackrabbit camouflage in response to past and future seasonal climates.

Mafalda S FerreiraTimothy J ThurmanMatthew R JonesLiliana FareloAlexander V KumarSebastian M E MortimerJohn R DemboskiL Scott MillsPaulo Célio AlvesJosé Melo-FerreiraJeffrey M Good
Published in: Science (New York, N.Y.) (2023)
The genetic basis of adaptive traits has rarely been used to predict future vulnerability of populations to climate change. We show that light versus dark seasonal pelage in white-tailed jackrabbits ( Lepus townsendii ) tracks snow cover and is primarily determined by genetic variation at endothelin receptor type B ( EDNRB ), corin serine peptidase ( CORIN ), and agouti signaling protein ( ASIP ). Winter color variation was associated with deeply divergent alleles at these genes, reflecting selection on both ancestral and introgressed variation. Forecasted reductions in snow cover are likely to induce widespread camouflage mismatch. However, simulated populations with variation for darker winter pelage are predicted to adapt rapidly, providing a trait-based genetic framework to facilitate evolutionary rescue. These discoveries demonstrate how the genetic basis of climate change adaptation can inform conservation.
Keyphrases
  • climate change
  • genome wide
  • dna methylation
  • human health
  • current status
  • gene expression
  • risk assessment
  • amino acid