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欧洲无肺螈科蝾螈身体各部位之间的热平衡和温度差异。

Thermal equilibrium and temperature differences among body regions in European plethodontid salamanders.

作者信息

Lunghi Enrico, Manenti Raoul, Canciani Giancarlo, Scarì Giorgio, Pennati Roberta, Ficetola Gentile Francesco

机构信息

Universität Trier Fachbereich VI Raum-und Umweltwissenschaften Biogeographie, Campus I, Gebäude N Universitätsring 15, 54286 Trier, Germany; Natural Oasis, Via di Galceti 141, 59100 Prato, Italy; Museo di Storia Naturale dell'Università di Firenze, Sezione di Zoologia "La Specola", Via Romana 17, 50125 Firenze, Italy.

Dipartimento di Bioscienze, Università degli Studi di Milano, Via Celoria 26, 20133 Milano, Italy.

出版信息

J Therm Biol. 2016 Aug;60:79-85. doi: 10.1016/j.jtherbio.2016.06.010. Epub 2016 Jun 15.

Abstract

Information on species thermal physiology is extremely important to understand species responses to environmental heterogeneity and changes. Thermography is an emerging technology that allows high resolution and accurate measurement of body temperature, but until now it has not been used to study thermal physiology of amphibians in the wild. Hydromantes terrestrial salamanders are strongly depending on ambient temperature for their activity and gas exchanges, but information on their body temperature is extremely limited. In this study we tested if Hydromantes salamanders are thermoconform, we assessed whether there are temperature differences among body regions, and evaluated the time required to reach the thermal equilibrium. During summers of 2014 and 2015 we analysed 56 salamanders (Hydromantes ambrosii and Hydromantes italicus) using infrared thermocamera. We photographed salamanders at the moment in which we found them and 1, 2, 3, 4, 5 and 15min after having kept them in the hands. Body temperature was equal to air temperature; salamanders attained the equilibrium with air temperature in about 8min, the time required to reach equilibrium was longer in individuals with large body size. We detected small temperature differences between body parts, the head being slightly warmer than the body and the tail (mean difference: 0.05°C). These salamanders quickly reach the equilibrium with the environment, thus microhabitat measurement allows obtaining accurate information on their tolerance limits.

摘要

有关物种热生理学的信息对于理解物种对环境异质性和变化的反应极为重要。热成像技术是一项新兴技术,能够高分辨率且准确地测量体温,但迄今为止尚未用于研究野生两栖动物的热生理学。水栖蝾螈的活动和气体交换强烈依赖于环境温度,但其体温信息极为有限。在本研究中,我们测试了水栖蝾螈是否为体温顺应者,评估了其身体各部位之间是否存在温度差异,并评估了达到热平衡所需的时间。在2014年和2015年夏季,我们使用红外热成像相机分析了56只蝾螈(安布罗西水栖蝾螈和意大利水栖蝾螈)。我们在发现蝾螈的瞬间以及将它们拿在手中1、2、3、4、5和15分钟后对其进行拍照。体温与气温相等;蝾螈在大约8分钟内与气温达到平衡,体型较大的个体达到平衡所需的时间更长。我们检测到身体各部位之间存在微小的温度差异,头部比身体和尾巴略暖和(平均差异:0.05°C)。这些蝾螈能迅速与环境达到平衡,因此对微生境的测量能够获取有关其耐受极限的准确信息。

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