MARATTO

article · Ecology and Evolution

Phenotypic correlates between clock genes and phenology among populations of Diederik cuckoo, <i>Chrysococcyx caprius</i>

Abstract

The Diederik cuckoo, <i>Chrysococcyx caprius</i>, is a small Afrotropical bird in the family Cuculidae. It is taxonomically related to 13 other species within the genus <i>Chrysococcyx</i> and is migratory in sub-Saharan Africa. It has a unique breeding behaviour of being a brood parasite: Breeding pairs lay their eggs in the nests of a host species and hatchlings expel the eggs of the host species. The aim of the present study was to investigate diversity in two circadian clock genes, <i>Clock</i> and <i>Adcyap1</i>, to probe for a relationship between genetic polymorphisms and their role in circannual timing and habitat selection (phenology) in intra-African migrants. DNA extracted from blood was used for the PCR amplification and sequencing of clock genes in 30 Diederik cuckoos. Three alleles were detected for <i>Clock</i> with similar genotypes between individuals from the Northern and Southern breeding ranges while 10 alleles were detected for <i>Adcyap1</i>, having shorter alleles in the North and longer alleles in the South. Population genetic analyses, including allele frequency and zygosity analysis, showed distinctly higher frequencies for the most abundant <i>Clock</i> allele, containing 10 polyglutamine repeats, as well as a high degree of homozygosity. In contrast, all individuals were heterozygous for <i>Adcyap1</i> and alleles from both regions showed distinct differences in abundance. Comparisons between both clock genes and phenology found several phenotypic correlations. This included evidence of a relationship between the shorter alleles and habitat selection as well as a relationship between longer alleles and timing. In both instances, evidence is provided that these effects may be sex-specific. Given that these genes drive some of the synchronicity between environments and the life cycles of birds, they provide valuable insight into the fitness of species facing global challenges including climate change, urbanisation and expanding agricultural practices.

Research topics

  • Genetic diversity and population structure
  • Species Distribution and Climate Change
  • Plant and animal studies

Sustainable Development Goals

Read the original research

This page summarises published work. The authoritative version sits with the publisher.

DOI: 10.1002/ece3.70117

Is something wrong with this record? Report it or request removal.

Discussion

Discuss this research

Have you built on this work, tried to replicate it, or seen it applied in practice? Share what you know. Verified researchers and MARATTO™ domain experts can open a discussion, and any member can reply. Contributions are reviewed before they appear.

No discussion yet. Open the first thread.