Examination of Clock and Adcyap1 gene variation in a neotropical migratory passerine.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 29324772.
- Also identified by DOI 10.1371/journal.pone.0190859 and PMC identifier 5764313.
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Abstract
Complex behavioral traits, such as those making up a migratory phenotype, are regulated by multiple environmental factors and multiple genes. We investigated possible relationships between microsatellite variation at two candidate genes implicated in the control of migratory behavior, Clock and Adcyap1, and several aspects of migratory life-history and evolutionary divergence in the Painted Bunting (Passerina ciris), a species that shows wide variation in migratory and molting strategies across a disjunct distribution. We focused on Clock and Adcyap1 microsatellite variation across three Painted Bunting populations in Oklahoma, Louisiana, and North Carolina, and for the Oklahoma breeding population we used published migration tracking data on adult males to explore phenotypic variation in individual migratory behavior. We found no correlation between microsatellite allele size within either Clock and Adcyap1 relative to the initiation or duration of fall migration in adult males breeding in Oklahoma. We also show the lack of significant correlations with aspects of the migratory phenotype for the Louisiana population. Our research highlights the limitations of studying microsatellite allelic mutations that are of undetermined functional influence relative to complex behavioral phenotypes.
Medical subject headings
- Avian Proteins
- CLOCK Proteins
- Genetic Variation
- Microsatellite Repeats
- Pituitary Adenylate Cyclase-Activating Polypeptide
- Songbirds