Related Experiment Video
Updated: Aug 10, 2025

Visually Sexing Loggerhead Shrike Lanius Ludovicianus Using Plumage Coloration and Pattern
Published on: March 8, 2020
Genomic architecture of migration timing in a long-distance migratory songbird
Evelien de Greef1, Alexander Suh2,3, Matt J Thorstensen4
1Department of Biological Sciences, University of Manitoba, Winnipeg, R3T 2N2, Canada. eveliendegreef@gmail.com.
Abstract:
The impact of climate change on spring phenology poses risks to migratory birds, as migration timing is controlled predominantly by endogenous mechanisms. Despite recent advances in our understanding of the underlying genetic basis of migration timing, the ways that migration timing phenotypes in wild individuals may map to specific genomic regions requires further investigation. We examined the genetic architecture of migration timing in a long-distance migratory songbird (purple martin, Progne subis subis) by integrating genomic data with an extensive dataset of direct migratory tracks. A moderate to large amount of variance in spring migration arrival timing was explained by genomics (proportion of phenotypic variation explained by genomics = 0.74; polygenic score R2 = 0.24). On chromosome 1, a region that was differentiated between migration timing phenotypes contained genes that could facilitate nocturnal flights and act as epigenetic modifiers. Overall, these results advance our understanding of the genomic underpinnings of migration timing.
Related Concept Videos
Migration
Genetics of Speciation
Gastrulation
Gene Flow
Speciation Rates
Position-effect Variegation

