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树懒的新陈代谢可能会使它们在气候变化情景下难以生存。

Sloth metabolism may make survival untenable under climate change scenarios.

机构信息

The Sloth Conservation Foundation, Hayfield, Derbyshire, United Kingdom.

Swansea Lab for Animal Movement, Biosciences, College of Science, Swansea University, Swansea, Wales, United Kingdom.

出版信息

PeerJ. 2024 Sep 27;12:e18168. doi: 10.7717/peerj.18168. eCollection 2024.

Abstract

Although climate change is predicted to have a substantial effect on the energetic requirements of organisms, the longer-term implications are often unclear. Sloths are limited by the rate at which they can acquire energy and are unable to regulate core body temperature (T) to the extent seen in most mammals. Therefore, the metabolic impacts of climate change on sloths are expected to be profound. Here we use indirect calorimetry to measure the oxygen consumption (VO) and T of highland and lowland two-fingered sloths ( when exposed to a range of different ambient temperatures (T) (18 °C -34 °C), and additionally record changes in T and posture over several days in response to natural fluctuations in T. We use the resultant data to predict the impact of future climate change on the metabolic rate and T of the different sloth populations. The metabolic responses of sloths originating from the two sites differed at high T's, with lowland sloths invoking metabolic depression as temperatures rose above their apparent 'thermally-active zone' (TAZ), whereas highland sloths showed increased RMR. Based on climate change estimates for the year 2100, we predict that high-altitude sloths are likely to experience a substantial increase in metabolic rate which, due to their intrinsic energy processing limitations and restricted geographical plasticity, may make their survival untenable in a warming climate.

摘要

尽管气候变化预计会对生物体的能量需求产生重大影响,但长期影响往往不明确。树懒的能量获取速度有限,无法像大多数哺乳动物那样调节核心体温(T)。因此,气候变化对树懒的代谢影响预计将是深远的。在这里,我们使用间接测热法来测量高山和低地两种树懒的耗氧量(VO)和 T,当它们暴露在一系列不同的环境温度(T)(18°C-34°C)下时,此外,还记录了在几天内对 T 的自然波动的 T 和姿势的变化。我们使用这些数据来预测未来气候变化对不同树懒种群代谢率和 T 的影响。来自两个地点的树懒的代谢反应在高温下有所不同,低地树懒在温度升高到其明显的“热活动区”(TAZ)以上时会出现代谢抑制,而高地树懒则表现出更高的 RMR。根据 2100 年的气候变化估计,我们预测高海拔树懒的代谢率可能会大幅增加,由于它们内在的能量处理限制和有限的地理可塑性,这可能使它们在气候变暖的情况下无法生存。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a9c/11441404/17d51df4ddf5/peerj-12-18168-g001.jpg

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