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Combining individual-based radio-tracking with whole-genome sequencing data reveals candidate for genetic basis of partial migration in a songbird
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  • Matthias Weissensteiner,
  • Kira Delmore,
  • Valentina Peona,
  • Juan Sebastian Lugo Ramos,
  • Arnaud Gregoire,
  • Julio Blas,
  • Bruno Faivre,
  • Ivan Pokrovsky,
  • Martin Wikelski,
  • Jesko Partecke,
  • Miriam Liedvogel
Matthias Weissensteiner
Institut für Vogelforschung

Corresponding Author:mh.weissensteiner@gmail.com

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Kira Delmore
Columbia University
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Valentina Peona
Schweizerische Vogelwarte
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Juan Sebastian Lugo Ramos
The Francis Crick Institute
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Arnaud Gregoire
Centre d'Ecologie Fonctionnelle et Evolutive
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Julio Blas
Estación Biológica de Doñana
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Bruno Faivre
UMR CNRS 5561-Biogéosciences
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Ivan Pokrovsky
Max Planck Institute of Animal Behavior
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Martin Wikelski
Max Planck Institute of Animal Behavior
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Jesko Partecke
Max Planck Institute of Animal Behavior
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Miriam Liedvogel
Max Planck Institute for Evolutionary Biology
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Abstract

Partial migration is a phenomenon where migratory and resident individuals of the same species co-exist within a population, and has been linked to both intrinsic (e.g., genetic) as well as environmental factors. Here we investigated the genomic architecture of partial migration in the Common blackbird, a songbird that comprises resident populations in the southern distribution range, partial migratory populations in central Europe and exclusively migratory populations in northern and eastern Europe. We generated whole-genome sequencing data for 60 individuals across the species’ distribution range, including resident populations (Spain and France), obligate migrants (Russia), and a partial migratory population with equal numbers of migratory and resident individuals in Germany. We estimated genetic differentiation (FST) of single-nucleotide variants (SNVs) in 2.5 kb windows between all possible population and migratory phenotype combinations, and focused our characterization on birds from the partial migratory population in Germany that have been individually phenotyped with radio-telemetry tracking. Despite overall low differentiation within the partial migratory German population, we identified several outlier regions with elevated differentiation on four distinct chromosomes. The region with the highest relative and absolute differentiation was located on chromosome 9, overlapping PER2, which has previously been shown to be involved in the control of the circadian rhythm across vertebrates. While this region showed high levels of differentiation, no fixed variant could be identified, supporting the notion that a complex phenotype such as migratory behavior is likely controlled by a large number of genetic loci.
27 Aug 2024Submitted to Ecology and Evolution
30 Aug 2024Submission Checks Completed
30 Aug 2024Assigned to Editor
05 Sep 2024Reviewer(s) Assigned
08 Oct 2024Review(s) Completed, Editorial Evaluation Pending
11 Nov 2024Editorial Decision: Revise Minor
10 Dec 20241st Revision Received
12 Dec 2024Submission Checks Completed
12 Dec 2024Assigned to Editor
12 Dec 2024Review(s) Completed, Editorial Evaluation Pending
17 Dec 2024Editorial Decision: Accept