4.5 Article

Body size and substrate use affect ventral, but not dorsal, brightness evolution in lizards

期刊

EVOLUTION
卷 77, 期 6, 页码 1341-1353

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OXFORD UNIV PRESS
DOI: 10.1093/evolut/qpad065

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Cordylidae; color evolution; substrate-specific heat capacity; body structure; thermoregulation; melanism

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Substrate properties can affect the thermal balance of organisms, and the colored integument, alongside other factors, may influence heat transfer via differential absorption and reflection. Bright ventral colors occur more frequently in low c(p) substrates, especially in larger body-sized individuals, possibly to better modulate heat transfer with the surrounding environment. Dorsal brightness, on the other hand, is not associated with body size or any substrate thermal property, suggesting other selection pressures.
Substrate properties can affect the thermal balance of organisms, and the colored integument, alongside other factors, may influence heat transfer via differential absorption and reflection. Dark coloration may lead to higher heat absorption and could be advantageous when substrates are cool (and vice versa for bright coloration), but these effects are rarely investigated. Here, we examined the effect of substrate reflectance, specific heat capacity (c(p)), and body size on the dorso-ventral brightness using 276 samples from 12 species of cordylid lizards distributed across 26 sites in South Africa. We predicted, and found, that bright ventral colors occur more frequently in low c(p) (i.e., drier, with little energy needed for temperature change) substrates, especially in larger body-sized individuals, possibly to better modulate heat transfer with the surrounding environment. By contrast, dorsal brightness was not associated with body size nor any substrate thermal property, suggesting selection pressures other than thermoregulation. Ancestral estimation and evolutionary rate analyses suggest that ventral brightness rapidly differentiated within the Cordylinae starting 25 Mya, coinciding with an aridification period, further hinting at a thermoregulatory role for ventral colors. Our study indicates that substrate properties can have a direct role in shaping the evolution of ventral brightness in ectotherms.

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