Territoriality and variation in home range size through the entire annual range of migratory great spotted cuckoos (Clamator glandarius)

  • Josse Rühmann
  • , Manuel Soler
  • , Tomas Perez-Contreras
  • , Juan Diego Ibanez-Alamo*
  • *Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

21 Citations (Scopus)
123 Downloads (Pure)

Abstract

Variation in home range size throughout the year and its causes are not well understood yet. Migratory brood parasites offer a unique opportunity to incorporate this spatio-temporal dimension into the study of the factors regulating home range dynamics. Using satellite transmitters, we tracked sixteen migratory great spotted cuckoos (Clamator glandarius) of both sexes for up to three years. We constructed home ranges in all major staging areas, from the Spanish breeding areas to the African wintering grounds, analyzed their temporal and geographical variation and investigated their main potential determinants (e.g. food and host availability). We found that home ranges were significantly larger in the breeding area compared to non-breeding areas. Using NDVI as a proxy for food availability, we showed that breeding area home ranges have significantly lower food availability per km(2) than home ranges elsewhere which could explain why cuckoos use alternative areas with higher food availability before initiating migration. We also found some evidence for sex differences. Additionally, we found no indications of territoriality in this species, providing novel information into the current debate on brood parasite territoriality. Overall, food availability seems to be an important factor regulating home range dynamics and influencing migratory patterns throughout the year in great spotted cuckoos.

Original languageEnglish
Article number6238
Number of pages11
JournalScientific Reports
Volume9
DOIs
Publication statusPublished - 17-Apr-2019

Keywords

  • PARASITE INTERACTIONS
  • BROOD-PARASITE
  • MATING SYSTEM
  • HABITAT USE
  • SPACE
  • PATTERNS
  • HOST
  • AUTOCORRELATION
  • MOVEMENTS
  • TRACKING

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