应对炎热的岩石环境:石爪龙的临界热最大值和运动性能(无尾目:细爪龙科)

IF 1.1 4区 生物学 Q3 ZOOLOGY Herpetological Journal Pub Date : 2019-07-01 DOI:10.33256/HJ29.3.155161
Iván Beltrán, Valeria Ramírez-Castañeda, Camilo Rodríguez-López, E. Lasso, A. Amézquita
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引用次数: 3

摘要

环境温度对变温动物的发育、生态和行为具有适应性影响。两栖动物尤其脆弱,因为体温调节经常与适当的水分平衡相交换。尽管有大量的研究评估了温度对两栖动物运动和生理极限的影响,但关于极端温度条件下两栖动物生活的信息很少。Leptodactylus lithonaetes是一种专门在黑暗花岗岩露头和相关水坑上觅食和繁殖的青蛙,环境温度远高于40˚C。成虫可以在白天选择热有利的微栖息地,而蝌蚪则被限制在岩石水坑和相关的温度波动中;因此,我们建立了微生境温度,并测试了蝌蚪的临界热最大值(CTmax)是否高于成虫。此外,我们还评估了水温对蝌蚪运动性能的影响。与我们的预期相反,水坑的温度与成人白天使用的微栖息地的温度相当,甚至更低。然而,蝌蚪的CTmax为42.3˚C,成人为39.7˚C。在运动性能方面,蝌蚪的最大速度和最大移动距离在34˚C左右达到峰值,比水坑中记录的最高温度低约1˚C。综上所述,lithonaetes蝌蚪的CTmax高于成虫,这表明蝌蚪暴露在极端温度下的时间更长,从而维持了它们在高温下的生理机能。我们认为,这些条件是面对花岗岩生境驱动的强大选择力的适应。
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Dealing with hot rocky environments: Critical thermal maxima and locomotor performance in Leptodactylus lithonaetes (Anura: Leptodactylidae)
Environmental temperature has fitness consequences on ectotherm development, ecology and behaviour. Amphibians are especially vulnerable because thermoregulation often trades with appropriate water balance. Although substantial research has evaluated the effect of temperature in amphibian locomotion and physiological limits, there is little information about amphibians living under extreme temperature conditions. Leptodactylus lithonaetes is a frog allegedly specialised to forage and breed on dark granitic outcrops and associated puddles, which reach environmental temperatures well above 40 ˚C. Adults can select thermally favourable microhabitats during the day while tadpoles are constrained to rock puddles and associated temperature fluctuations; we thus established microhabitat temperatures and tested whether the critical thermal maximum (CTmax) of L. lithonaetes is higher in tadpoles compared to adults. In addition, we evaluated the effect of water temperature on locomotor performance of tadpoles. Contrary to our expectations, puddle temperatures were comparable and even lower than those temperatures measured in the microhabitats used by adults in the daytime. Nonetheless, the CTmax was 42.3 ˚C for tadpoles and 39.7 ˚C for adults. Regarding locomotor performance, maximum speed and maximum distance travelled by tadpoles peaked around 34 ˚C, approximately 1 ˚C below the maximum puddle temperatures registered in the puddles. In conclusion, L. lithonaetes tadpoles have a higher CTmax compared to adults, suggesting a longer exposure to extreme temperatures that lead to maintain their physiological performance at high temperatures. We suggest that these conditions are adaptations to face the strong selection forces driven by this granitic habitat.
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来源期刊
Herpetological Journal
Herpetological Journal 生物-动物学
CiteScore
2.40
自引率
10.00%
发文量
25
审稿时长
>12 weeks
期刊介绍: The Herpetological Journal is the Society''s prestigious quarterly scientific journal.
期刊最新文献
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