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繁殖状况、栖息地小气候和天气模式对食虫蝙蝠夏季蛰伏的影响。

Effects of reproductive condition, roost microclimate, and weather patterns on summer torpor use by a vespertilionid bat.

机构信息

Department of Biology, Bucknell University Lewisburg, 17837, Pennsylvania.

Department of Forestry, University of Kentucky Lexington, 40546, Kentucky.

出版信息

Ecol Evol. 2014 Jan;4(2):157-66. doi: 10.1002/ece3.913. Epub 2013 Dec 20.

Abstract

A growing number of mammal species are recognized as heterothermic, capable of maintaining a high-core body temperature or entering a state of metabolic suppression known as torpor. Small mammals can achieve large energetic savings when torpid, but they are also subject to ecological costs. Studying torpor use in an ecological and physiological context can help elucidate relative costs and benefits of torpor to different groups within a population. We measured skin temperatures of 46 adult Rafinesque's big-eared bats (Corynorhinus rafinesquii) to evaluate thermoregulatory strategies of a heterothermic small mammal during the reproductive season. We compared daily average and minimum skin temperatures as well as the frequency, duration, and depth of torpor bouts of sex and reproductive classes of bats inhabiting day-roosts with different thermal characteristics. We evaluated roosts with microclimates colder (caves) and warmer (buildings) than ambient air temperatures, as well as roosts with intermediate conditions (trees and rock crevices). Using Akaike's information criterion (AIC), we found that different statistical models best predicted various characteristics of torpor bouts. While the type of day-roost best predicted the average number of torpor bouts that bats used each day, current weather variables best predicted daily average and minimum skin temperatures of bats, and reproductive condition best predicted average torpor bout depth and the average amount of time spent torpid each day by bats. Finding that different models best explain varying aspects of heterothermy illustrates the importance of torpor to both reproductive and nonreproductive small mammals and emphasizes the multifaceted nature of heterothermy and the need to collect data on numerous heterothermic response variables within an ecophysiological context.

摘要

越来越多的哺乳动物物种被认为是异温动物,能够维持高核心体温或进入代谢抑制状态,即蛰伏。小型哺乳动物在蛰伏时可以实现巨大的能量节省,但它们也面临着生态成本。在生态和生理背景下研究蛰伏的使用可以帮助阐明蛰伏对种群内不同群体的相对成本和收益。我们测量了 46 只成年拉芬斯奎氏大耳蝠(Corynorhinus rafinesquii)的皮肤温度,以评估异温小型哺乳动物在繁殖季节的体温调节策略。我们比较了不同性别和繁殖类别的蝙蝠在具有不同热特征的日间栖息地中的每日平均和最低皮肤温度以及蛰伏发作的频率、持续时间和深度。我们评估了比环境空气温度更冷(洞穴)和更温暖(建筑物)的微气候栖息地,以及具有中等条件的栖息地(树木和岩石裂缝)。使用赤池信息量准则(AIC),我们发现不同的统计模型最好地预测了蛰伏发作的各种特征。虽然日间栖息地的类型最好地预测了蝙蝠每天使用的蛰伏发作的平均次数,但当前的天气变量最好地预测了蝙蝠的每日平均和最低皮肤温度,而繁殖状况最好地预测了平均蛰伏发作深度和蝙蝠每天处于蛰伏状态的平均时间。发现不同的模型最好地解释了异温性的不同方面,这说明了蛰伏对繁殖和非繁殖小型哺乳动物的重要性,并强调了异温性的多面性以及在生态生理背景下收集大量异温性反应变量数据的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ebb/3925379/df5d2edf4310/ece30004-0157-f1.jpg

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