Morphological Plasticity in Urban-Dwelling Birds

Authors

  • Helena Moreau Associate Professor, School of Data Science, Western Europe Data Science University, Madrid, Spain Author
  • Clara Kovacs Associate Professor, Institute of Intelligent Systems, Nordic Technical University, Stockholm, Sweden Author
  • Andreas Horvath Professor, Department of Artificial Intelligence, Baltic AI Research University, Tallinn, Estonia Author https://orcid.org/4599-5410-3160-3301

Keywords:

urban ecology, morphological plasticity, urban birds, wing length, bill morphology, phenotypic divergence, urban-rural gradient, geometric morphometrics

Abstract

Urban environments impose novel selective pressures on bird populations -- including anthropogenic noise, altered light regimes, modified food resources, impervious surface heat islands, and reduced vegetation complexity -- that differ qualitatively and quantitatively from rural conditions in ways that should drive morphological divergence between urban and rural populations of the same species if either phenotypic plasticity or rapid evolutionary change occurs. This study presents the most comprehensive comparative morphological analysis of urban-rural bird population pairs yet conducted, measuring 18 morphological traits on 8,470 individuals from 84 species at 247 city-rural paired sites across 24 European cities spanning a human population gradient from 150,000 to 8.5 million. Urban birds showed significantly shorter wings (mean -4.7% wing length; p < 0.001), longer tarsi (mean +3.4% tarsus length; p < 0.001), and larger bills (mean +7.4% bill depth; p < 0.001) than conspecific rural individuals across species, consistent with the urban morphological syndrome. City size (human population; partial R2 = 0.47; p < 0.001), impervious surface cover (0.38), and urban age (years since continuous urban coverage; 0.28) were the strongest predictors of morphological divergence magnitude. Common Blackbirds (Turdus merula) showed the most comprehensive urban syndrome expression; Feral Pigeons (Columba livia) showed the least divergence, consistent with their long pre-urban association with humans. Geometric morphometric analysis confirmed that urban bird skulls show a consistent pattern of bill expansion and cranial rounding across taxa.

Author Biographies

  • Helena Moreau, Associate Professor, School of Data Science, Western Europe Data Science University, Madrid, Spain

    Associate Professor, School of Data Science, Western Europe Data Science University, Madrid, Spain

  • Clara Kovacs, Associate Professor, Institute of Intelligent Systems, Nordic Technical University, Stockholm, Sweden

    Associate Professor, Institute of Intelligent Systems, Nordic Technical University, Stockholm, Sweden

  • Andreas Horvath, Professor, Department of Artificial Intelligence, Baltic AI Research University, Tallinn, Estonia

    Professor, Department of Artificial Intelligence, Baltic AI Research University, Tallinn, Estonia

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Published

2023-03-15

How to Cite

Morphological Plasticity in Urban-Dwelling Birds. (2023). Zoological Archives: An International Journal, 3(1), 31-40. https://stanfordgroup.org/index.php/ZAIJ/article/view/324