Flexible Employment of Torpor in Squirrel Gliders (Petaurus norfolcensis): An Adaptation to Unpredictable Climate?

IF 1.8 3区 生物学 Q3 PHYSIOLOGY Physiological and Biochemical Zoology Pub Date : 2023-01-01 DOI:10.1086/722131
Kathrin H Dausmann, Gerhard Körtner, Yaara Aharon-Rotman, Shannon E Currie, Fritz Geiser
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引用次数: 2

Abstract

AbstractTorpor is a highly effective response to counter various ecological and physiological bottlenecks in endotherms. In this study, we examined interrelations between thermoregulatory responses and key environmental variables in free-living squirrel gliders (Petaurus norfolcensis) in a habitat with drastic climatic and ecological changes across seasons. To this end, we measured body temperature (Tb) and heart rate (fH) simultaneously throughout the year using implanted data loggers. Squirrel gliders in our study experienced fluctuations in ambient temperature (Ta) between -4.0°C and 44.1°C and expressed torpor at different times during the year. In contrast to our expectations, torpor seemed to be employed flexibly, on demand, and most frequently in spring rather than during the coldest and/or hottest periods. Torpor bouts lasted, on average, about 5 h, and Tb during torpor dropped as low as 17.9°C. The fH during torpor decreased below 50 bpm, which is about one-third of the basal level. The ability to record fH alongside Tb enabled us to also report periods of low fH during thermoconforming hyperthermia at Ta's above 35°C that likely occurred to conserve energy and water. Our findings double the body size of Australian gliders for which data on torpor are available and advance our ecological understanding of the dynamics of torpor expression in wild mammals and of how animals cope with varying conditions. Moreover, they highlight that the flexibility of physiology and thermoregulatory responses are clearly more complex than previously thought.

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松鼠滑翔机(Petaurus norfolcensis)对冬眠的灵活利用:对不可预测气候的适应?
摘要:睡眠是恒温动物应对各种生态和生理瓶颈的有效反应。在本研究中,我们研究了自由生活的滑翔鼠(Petaurus norfolcensis)在季节性气候和生态变化剧烈的栖息地中的体温调节反应与关键环境变量的相互关系。为此,我们使用植入式数据记录仪全年同时测量体温(Tb)和心率(fH)。在我们的研究中,松鼠滑翔机经历了环境温度(Ta)在-4.0°C和44.1°C之间的波动,并在一年中的不同时间表现出麻木。与我们的预期相反,“麻木”似乎是灵活的,根据需要,最常见的是在春天,而不是在最冷和/或最热的时期。冬眠期平均持续约5小时,冬眠期间的Tb低至17.9°C。冬眠时的fH降至50bpm以下,约为基础水平的三分之一。记录fH和Tb的能力使我们能够在温度高于35°C的热适应热疗期间报告低fH,这可能是为了节约能源和水。我们的发现使澳大利亚滑翔机的体型增加了一倍,这是关于冬眠的数据,并促进了我们对野生哺乳动物冬眠表达动态的生态学理解,以及动物如何应对不同的条件。此外,他们强调生理和体温调节反应的灵活性显然比以前认为的要复杂得多。
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来源期刊
CiteScore
3.20
自引率
6.20%
发文量
62
审稿时长
6-12 weeks
期刊介绍: Physiological and Biochemical Zoology: Ecological and Evolutionary Approaches primarily publishes original research in animal physiology and biochemistry as considered from behavioral, ecological, and/or evolutionary perspectives. Studies at all levels of biological organization from the molecular to the whole organism are welcome, and work that integrates across levels of organization is particularly encouraged. Studies that focus on behavior or morphology are welcome, so long as they include ties to physiology or biochemistry, in addition to having an ecological or evolutionary context. Subdisciplines of interest include nutrition and digestion, salt and water balance, epithelial and membrane transport, gas exchange and transport, acid-base balance, temperature adaptation, energetics, structure and function of macromolecules, chemical coordination and signal transduction, nitrogen metabolism and excretion, locomotion and muscle function, biomechanics, circulation, behavioral, comparative and mechanistic endocrinology, sensory physiology, neural coordination, and ecotoxicology ecoimmunology.
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IGF-1 Levels Increase during an Immune but Not an Oxidative Challenge in an Avian Model, the Japanese Quail Infection Causes Trade-Offs between Development and Growth in Larval Amphibians. Announcement: Physiological and Biochemical Zoology Is Changing Its Name to Ecological and Evolutionary Physiology. Environmental stress and the morphology of Daphnia pulex The rate of cooling during torpor entry drives torpor patterns in a small marsupial
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