Offspring plumage coloration as a condition-dependent signal in the blue tit

Jorge García-Campa1, Wendt Müller2, Judith Morales1

  • 1Department of Evolutionary Ecology National Museum of Natural Sciences - Spanish National Research Council (CSIC) Madrid Spain.

Ecology and Evolution
|February 6, 2023
PubMed

Insights

Blue tit nestling breast plumage color signals offspring quality. UV chroma and brightness correlate with body mass, indicating genetic or parental factors, with brightness potentially aiding within-family communication.

Area of Science:

  • Avian ecology
  • Animal coloration
  • Behavioral ecology

Background:

  • Offspring often exhibit conspicuous coloration despite predation risk.
  • Adult plumage signaling is well-studied, but juvenile signaling is less explored.
  • The function of early-life coloration in species like the blue tit (Cyanistes caeruleus) remains unclear.

Purpose of the Study:

  • To investigate if blue tit nestling yellow breast plumage is condition-dependent.
  • To determine if plumage color signals individual quality in young birds.
  • To explore the relationship between nestling body mass and plumage color components.

Main Methods:

  • Studied blue tit nestlings over three breeding seasons.
  • Measured nestling body mass and three breast plumage color components (UV chroma, carotenoid chroma, total brightness).
  • Analyzed within-nest and among-nest variation in plumage color relative to body mass.

Main Results:

  • Carotenoid chroma did not correlate with body mass.
  • UV chroma and total brightness showed among-nest variation linked to body mass, suggesting signaling of genetic quality or parental care.
  • Total brightness exhibited a within-nest effect of body mass, indicating a condition-dependent signal.

Conclusions:

  • Specific plumage color components in blue tit nestlings signal different aspects of offspring quality.
  • Brightness may serve as an honest signal within the family, potentially influencing parental feeding behavior.
  • Coloration may have a correlated signaling value across different life stages in birds.

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