Female lizards (Eremias argus) reverse Bergmann's rule across altitude

Abstract The evolution of body size within and among species is predicted to be influenced by multifarious environmental factors. However, the specific drivers of body size variation have remained difficult to understand because of the wide range of proximate factors that covary with ectotherm body...

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Bibliographic Details
Main Authors: Gideon Gywa Deme, Xixi Liang, Joseph Onyekwere Okoro, Prakash Bhattarai, Baojun Sun, Yoila David Malann, Ryan A. Martin
Format: Article
Language:English
Published: Wiley 2023-08-01
Series:Ecology and Evolution
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Online Access:https://doi.org/10.1002/ece3.10393
Description
Summary:Abstract The evolution of body size within and among species is predicted to be influenced by multifarious environmental factors. However, the specific drivers of body size variation have remained difficult to understand because of the wide range of proximate factors that covary with ectotherm body sizes across populations with varying local environmental conditions. Here, we used female Eremias argus lizards collected from different populations across their wide range in China, and constructed linear mixed models to assess how climatic conditions and/or available resources at different altitudes shape the geographical patterns of lizard body size across altitude. Lizard populations showed significant differences in body size across altitudes. Furthermore, we found that climatic and seasonal changes along the altitudinal gradient also explained variations in body size among populations. Specifically, body size decreased with colder and drier environmental conditions at high altitudes, reversing Bergmann's rule. Limited resources at high altitudes, measured by the low vegetative index, may also constrain body size. Therefore, our study demonstrates that multifarious environmental factors could strongly influence the intraspecific variation in organisms' body size.
ISSN:2045-7758