Login / Signup

A migration-associated supergene reveals loss of biocomplexity in Atlantic cod.

Tony KessPaul BentzenSarah Jean LehnertEmma V A SylvesterSigbjørn LienMatthew P KentMarion Sinclair-WatersCorey J MorrisPaul RegularRobert FairweatherIan R Bradbury
Published in: Science advances (2019)
Chromosome structural variation may underpin ecologically important intraspecific diversity by reducing recombination within supergenes containing linked, coadapted alleles. Here, we confirm that an ancient chromosomal rearrangement is strongly associated with migratory phenotype and individual genetic structure in Atlantic cod (Gadus morhua) across the Northwest Atlantic. We reconstruct trends in effective population size over the last century and reveal declines in effective population size matching onset of industrialized harvest (after 1950). We find different demographic trajectories between individuals homozygous for the chromosomal rearrangement relative to heterozygous or homozygous individuals for the noninverted haplotype, suggesting different selective histories across the past 150 years. These results illustrate how chromosomal structural diversity can mediate fine-scale genetic, phenotypic, and demographic variation in a highly connected marine species and show how overfishing may have led to loss of biocomplexity within Northern cod stock.
Keyphrases
  • copy number
  • genome wide
  • dna methylation
  • air pollution
  • dna damage
  • depressive symptoms
  • early onset
  • oxidative stress