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Updated: Apr 19, 2026

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Social structure varies with elevation in an Alpine ant.

Jessica Purcell1, Loïc Pellissier, Michel Chapuisat

  • 1Department of Ecology and Evolution, University of Lausanne, Biophore, UNIL-Sorge, Lausanne, 1015, Switzerland.

Molecular Ecology
|December 19, 2014
PubMed
Summary

Higher elevations in Alpine ant populations favor single-queen (monogynous) colonies, while lower elevations support multiple-queen (polygynous) societies. This social structure shift is linked to temperature, not precipitation.

Keywords:
altitudeclimateformicinaerange limitsocial evolutionsocial polymorphism

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Area of Science:

  • Ecology and Evolutionary Biology
  • Behavioral Ecology
  • Social Insects

Background:

  • Insect social organization varies significantly, but the drivers of this diversity (ecological vs. genetic) are not fully understood.
  • Studying social structure along environmental gradients can reveal conditions favoring different social systems.
  • The Alpine silver ant (Formica selysi) is a socially polymorphic species, exhibiting both monogynous (single queen) and polygynous (multiple queens) colonies.

Purpose of the Study:

  • To investigate how queen number variation is distributed along elevation gradients in Formica selysi.
  • To determine the influence of ecological factors, such as temperature and precipitation, on social organization in this ant species.
  • To understand the ecological conditions that maintain social polymorphism in insect societies.

Main Methods:

  • Sampling of low- and high-elevation populations of Formica selysi across multiple Alpine valleys.
  • Genetic differentiation analysis between populations from different drainage basins and elevations.
  • Quantification of monogynous and polygynous colony proportions and effective queen number at different elevations.

Main Results:

  • Populations are genetically differentiated between drainage basins but show little divergence along elevation gradients within basins.
  • All sampled populations are socially polymorphic, but the proportion of monogynous colonies increases with elevation.
  • Higher elevations correlate with increased monogynous colonies and decreased effective queen number in polygynous colonies, linked to temperature.

Conclusions:

  • Elevation gradients represent independent contrasts for studying social organization in Formica selysi.
  • Colder, unpredictable high-elevation environments favor monogynous colonies, while stable lowlands favor polygynous colonies.
  • Environmental conditions, particularly temperature, play a crucial role in shaping the distribution and maintenance of social polymorphism.