Climate and body size have differential roles on melanism evolution across workers in a worldwide ant genus View Full Text


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Article Info

DATE

2022-07-09

AUTHORS

Cristian L. Klunk, Rafael O. Fratoni, C. Daniel Rivadeneira, Laura M. Schaedler, Daniela M. Perez

ABSTRACT

One of the main aspects associated with the diversity in animal colour is the variation in melanization levels. In ectotherms, melanism can be advantageous in aiding thermoregulation through heat absorption. Darker bodies may also serve as a shield from harmful UV-B radiation. Melanism may also confer protection against parasites and predators through improving immunity responses and camouflage in regions with high precipitation, with complex and shaded vegetations and greater diversity of pathogens and parasites. We studied melanism evolution in the globally distributed ant genus Pheidole under the pressures of temperature, UV-B radiation and precipitation, while considering the effects of body size and nest habit, traits that are commonly overlooked. More importantly, we account for worker caste polymorphism, which is marked by distinct roles and behaviours. We revealed for the first time distinct evolutionary trajectories for each worker subcaste. As expected, major workers from species inhabiting locations with lower temperatures and higher precipitation tend to be more melanised. Curiously, we show a slight trend where minor workers of larger species also tend to have darker bodies when inhabiting regions with higher precipitation. Lastly, we did not find evidence for the effects of UV-B radiation and nest habit in the lightness variation of workers. Our paper explores the evolution of ant melanization considering a marked ant worker polymorphism and a wide range of ecological factors. We discuss our findings under the light of the Thermal Melanism Hypothesis, the Photoprotection Hypothesis and the Gloger’s Rule. More... »

PAGES

579-587

References to SciGraph publications

  • 2018-05-03. Macroecology and macroevolution of the latitudinal diversity gradient in ants in NATURE COMMUNICATIONS
  • 2014. Statistical Issues and Assumptions of Phylogenetic Generalized Least Squares in MODERN PHYLOGENETIC COMPARATIVE METHODS AND THEIR APPLICATION IN EVOLUTIONARY BIOLOGY
  • 1981-08. Field analyses of insect heat budgets: Reflectance, size and heating rates in OECOLOGIA
  • 1985-02. The basis of thermal melanism in the ladybird Adalia bipunctata: Differences in reflectance and thermal properties between the morphs in HEREDITY
  • 2012-06-28. NIH Image to ImageJ: 25 years of image analysis in NATURE METHODS
  • 2014-05-27. Global warming favours light-coloured insects in Europe in NATURE COMMUNICATIONS
  • 2011-07-27. A steep cline in ladybird melanism has decayed over 25 years: a genetic response to climate change? in HEREDITY
  • 2009-06-12. Behavioral evolution in the major worker subcaste of twig-nesting Pheidole (Hymenoptera: Formicidae): does morphological specialization influence task plasticity? in BEHAVIORAL ECOLOGY AND SOCIOBIOLOGY
  • 1984-11. The relation between caste ratios and division of labor in the ant genus Pheidole (Hymenoptera: Formicidae) in BEHAVIORAL ECOLOGY AND SOCIOBIOLOGY
  • 2008-09-26. Phototoxic effect of UVR on wild type, ebony and yellow mutants of Drosophila melanogaster: Life Span, fertility, courtship and biochemical aspects in SCIENCE CHINA LIFE SCIENCES
  • 2017-01-28. Thermal constraints on foraging of tropical canopy ants in OECOLOGIA
  • 2010-05-16. Community-level interactions and functional ecology of major workers in the hyperdiverse ground-foraging Pheidole (Hymenoptera, Formicidae) of Amazonian Ecuador in INSECTES SOCIAUX
  • 2020-09-02. Benefits of insect colours: a review from social insect studies in OECOLOGIA
  • 2014. A Primer on Phylogenetic Generalised Least Squares in MODERN PHYLOGENETIC COMPARATIVE METHODS AND THEIR APPLICATION IN EVOLUTIONARY BIOLOGY
  • Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/s00442-022-05211-x

    DOI

    http://dx.doi.org/10.1007/s00442-022-05211-x

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1149335916

    PUBMED

    https://www.ncbi.nlm.nih.gov/pubmed/35804249


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