Extra Nestlings That Are Condemned to Die Increase Reproductive Success in Hoopoes

Am Nat. 2024 Apr;203(4):503-512. doi: 10.1086/728883. Epub 2024 Feb 6.

Abstract

AbstractThe adaptive value of routinely laying more eggs than can be successfully fledged has intrigued evolutionary biologists for decades. Extra eggs could, for instance, be adaptive as insurance against hatching failures. Moreover, because recent literature demonstrates that sibling cannibalism is frequent in the Eurasian hoopoe (Upupa epops), producing extra offspring that may be cannibalized by older siblings might also be adaptive in birds. Here, directed to explore this possibility in hoopoes, we performed a food supplementation experiment during the laying period and a clutch size manipulation during the hatching stage. We found that females with the food supplement laid on average one more egg than control females and that the addition of a close-to-hatch egg at the end of the hatching period increased the intensity of sibling cannibalism and enhanced fledging success in hoopoe nests. Because none of the extra nestlings from the experimental extra eggs survived until fledging, these results strongly suggest that hoopoes obtain fitness advantages by using temporarily abundant resources to produce additional nestlings that will be cannibalized. These results therefore suppose the first experimental demonstration of the nutritive adaptive function of laying extra eggs in vertebrates with parental care.

Keywords: Upupa epops; clutch size; food availability; hatching asynchrony; icebox hypothesis; sibling cannibalism.

MeSH terms

  • Animals
  • Birds*
  • Cannibalism
  • Clutch Size
  • Female
  • Humans
  • Reproduction*
  • Siblings