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亚达伯拉象龟的活动模式及体温与环境温度的关系

Patterns of activity and body temperature of Aldabra giant tortoises in relation to environmental temperature.

作者信息

Falcón Wilfredo, Baxter Rich P, Furrer Samuel, Bauert Martin, Hatt Jean-Michel, Schaepman-Strub Gabriela, Ozgul Arpat, Bunbury Nancy, Clauss Marcus, Hansen Dennis M

机构信息

Department of Evolutionary Biology and Environmental Studies University of Zurich Zurich Switzerland.

Zurich Zoo Zurich Switzerland.

出版信息

Ecol Evol. 2018 Jan 19;8(4):2108-2121. doi: 10.1002/ece3.3766. eCollection 2018 Feb.

Abstract

We studied the temperature relations of wild and zoo Aldabra giant tortoises () focusing on (1) the relationship between environmental temperature and tortoise activity patterns ( = 8 wild individuals) and (2) on tortoise body temperature fluctuations, including how their core and external body temperatures vary in relation to different environmental temperature ranges (seasons;  = 4 wild and  = 5 zoo individuals). In addition, we surveyed the literature to review the effect of body mass on core body temperature range in relation to environmental temperature in the Testudinidae. Diurnal activity of tortoises was bimodally distributed and influenced by environmental temperature and season. The mean air temperature at which activity is maximized was 27.9°C, with a range of 25.8-31.7°C. Furthermore, air temperature explained changes in the core body temperature better than did mass, and only during the coldest trial, did tortoises with higher mass show more stable temperatures. Our results, together with the overall Testudinidae overview, suggest that, once variation in environmental temperature has been taken into account, there is little effect of mass on the temperature stability of tortoises. Moreover, the presence of thermal inertia in an individual tortoise depends on the environmental temperatures, and we found no evidence for inertial homeothermy. Finally, patterns of core and external body temperatures in comparison with environmental temperatures suggest that Aldabra giant tortoises act as mixed conformer-regulators. Our study provides a baseline to manage the thermal environment of wild and rewilded populations of an important island ecosystem engineer species in an era of climate change.

摘要

我们研究了野生和动物园中的阿尔达布拉象龟的温度关系,重点关注:(1)环境温度与龟的活动模式之间的关系(n = 8只野生个体);(2)龟的体温波动情况,包括其核心体温和体表温度如何随不同的环境温度范围(季节)变化(n = 4只野生个体和n = 5只动物园个体)。此外,我们查阅了文献,以回顾体重对陆龟科动物核心体温范围与环境温度关系的影响。龟的日间活动呈双峰分布,受环境温度和季节影响。活动最大化时的平均气温为27.9°C,范围在25.8 - 31.7°C之间。此外,气温比体重更能解释核心体温的变化,只有在最冷的试验中,体重较大的龟体温才表现得更稳定。我们的研究结果,连同陆龟科动物的总体概述表明,一旦考虑到环境温度的变化,体重对龟的温度稳定性影响很小。此外,个体龟的热惯性存在与否取决于环境温度,我们没有发现惯性体温调节的证据。最后,核心体温和体表温度与环境温度的对比模式表明,阿尔达布拉象龟兼具顺应者和调节者的特征。我们的研究为在气候变化时代管理一个重要的岛屿生态系统工程师物种的野生和再野生种群的热环境提供了基线。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df9d/5817133/6aa2a394f089/ECE3-8-2108-g001.jpg

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