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1.
Integr Comp Biol ; 2024 May 03.
Artigo em Inglês | MEDLINE | ID: mdl-38702856

RESUMO

As the world becomes warmer and precipitation patterns less predictable, organisms will experience greater heat and water stress. It is crucial to understand the factors that predict variation in thermal and hydric physiology among species. This study focuses on investigating the relationships between thermal and hydric diversity, and their environmental predictors, in a clade of Hispaniolan anole lizards, which are part of a broader Caribbean adaptive radiation. This clade, the 'cybotoid' anoles, occupies a wide range of thermal habitats (from sea level to several kilometers above it) and hydric habitats (such as xeric scrub, broadleaf forest, and pine forest), setting up the possibility for ecophysiological specialization among species. Among the thermal traits only cold tolerance is correlated with environmental temperature, and none of our climate variables were correlated with hydric physiology. Nevertheless, we found a negative relationship between heat tolerance (critical thermal maximum) and evaporative water loss at higher temperatures such that more heat tolerant lizards are also more desiccation tolerant at higher temperatures. This finding hints at shared thermal and hydric specialization at higher temperatures, underscoring the importance of considering the interactive effects of temperature and water balance in ecophysiological studies. While ecophysiological differentiation is a core feature of the anole adaptive radiation, our results suggest that close relatives in this lineage do not diverge in hydric physiology and only diverge partially in thermal physiology.

2.
Proc Biol Sci ; 281(1778): 20132433, 2014 Mar 07.
Artigo em Inglês | MEDLINE | ID: mdl-24430845

RESUMO

Understanding how quickly physiological traits evolve is a topic of great interest, particularly in the context of how organisms can adapt in response to climate warming. Adjustment to novel thermal habitats may occur either through behavioural adjustments, physiological adaptation or both. Here, we test whether rates of evolution differ among physiological traits in the cybotoids, a clade of tropical Anolis lizards distributed in markedly different thermal environments on the Caribbean island of Hispaniola. We find that cold tolerance evolves considerably faster than heat tolerance, a difference that results because behavioural thermoregulation more effectively shields these organisms from selection on upper than lower temperature tolerances. Specifically, because lizards in very different environments behaviourally thermoregulate during the day to similar body temperatures, divergent selection on body temperature and heat tolerance is precluded, whereas night-time temperatures can only be partially buffered by behaviour, thereby exposing organisms to selection on cold tolerance. We discuss how exposure to selection on physiology influences divergence among tropical organisms and its implications for adaptive evolutionary response to climate warming.


Assuntos
Adaptação Fisiológica , Regulação da Temperatura Corporal , Lagartos/fisiologia , Temperatura , Animais , Evolução Biológica , Mudança Climática , Clima Tropical , Índias Ocidentais
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