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首页> 外文期刊>Ecology and Evolution >Trading heat and hops for water: Dehydration effects on locomotor performance, thermal limits, and thermoregulatory behavior of a terrestrial toad
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Trading heat and hops for water: Dehydration effects on locomotor performance, thermal limits, and thermoregulatory behavior of a terrestrial toad

机译:将热量和啤酒花换成水:脱水对陆生蟾蜍的运动性能,温度极限和温度调节行为的影响

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摘要

Abstract Due to their highly permeable skin and ectothermy, terrestrial amphibians are challenged by compromises between water balance and body temperature regulation. The way in which such compromises are accommodated, under a range of temperatures and dehydration levels, impacts importantly the behavior and ecology of amphibians. Thus, using the terrestrial toad Rhinella schneideri as a model organism, the goals of this study were twofold. First, we determined how the thermal sensitivity of a centrally relevant trait?¢????locomotion?¢????was affected by dehydration. Secondly, we examined the effects of the same levels of dehydration on thermal preference and thermal tolerance. As dehydration becomes more severe, the optimal temperature for locomotor performance was lowered and performance breadth narrower. Similarly, dehydration was accompanied by a decrease in the thermal tolerance range. Such a decrease was caused by both an increase in the critical minimal temperature and a decrease in the thermal maximal temperature, with the latter changing more markedly. In general, our results show that the negative effects of dehydration on behavioral performance and thermal tolerance are, at least partially, counteracted by concurrent adjustments in thermal preference. We discuss some of the potential implications of this observation for the conservation of anuran amphibians.
机译:摘要由于陆地两栖动物具有高渗透性的皮肤和外热,因此受到水平衡和体温调节之间的折衷的挑战。在一定温度和脱水水平下适应这种折衷的方式对两栖动物的行为和生态产生重要影响。因此,以陆生蟾蜍莱茵菌为模型生物,这项研究的目标是双重的。首先,我们确定了中央相关性状的热敏感性如何受到脱水的影响。其次,我们研究了相同水平的脱水对热偏好和热耐受性的影响。随着脱水变得越来越严重,用于运动性能的最佳温度降低,并且性能广度变窄。类似地,脱水伴随着热耐受范围的减小。这种降低是由临界最低温度的升高和热最高温度的降低引起的,后者的变化更为明显。总的来说,我们的结果表明,脱水对行为表现和热耐受性的负面影响至少部分被同时进行的热偏好调整所抵消。我们讨论了该观察对无核两栖动物的保护的潜在影响。

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