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新热带蝙蝠毛发皮质醇浓度的种间和种内变异。

Inter- and intra-specific variation in hair cortisol concentrations of Neotropical bats.

作者信息

Sandoval-Herrera Natalia I, Mastromonaco Gabriela F, Becker Daniel J, Simmons Nancy B, Welch Kenneth C

机构信息

Department of Ecology and Evolutionary Biology, University of Toronto, Ontario, M5S 3B2, Canada.

Department of Biological Sciences, University of Toronto Scarborough, Ontario, M1C 1A4, Canada.

出版信息

Conserv Physiol. 2021 Jul 14;9(1):coab053. doi: 10.1093/conphys/coab053. eCollection 2021.

Abstract

Quantifying hair cortisol has become popular in wildlife ecology for its practical advantages for evaluating stress. Before hair cortisol levels can be reliably interpreted, however, it is key to first understand the intrinsic factors explaining intra- and inter-specific variation. Bats are an ecologically diverse group of mammals that allow studying such variation. Given that many bat species are threatened or have declining populations in parts of their range, minimally invasive tools for monitoring colony health and identifying cryptic stressors are needed to efficiently direct conservation efforts. Here we describe intra- and inter-specific sources of variation in hair cortisol levels in 18 Neotropical bat species from Belize and Mexico. We found that fecundity is an important ecological trait explaining inter-specific variation in bat hair cortisol. Other ecological variables such as colony size, roost durability and basal metabolic rate did not explain hair cortisol variation among species. At the individual level, females exhibited higher hair cortisol levels than males and the effect of body mass varied among species. Overall, our findings help validate and accurately apply hair cortisol as a monitoring tool in free-ranging bats.

摘要

由于毛发皮质醇在评估压力方面具有实际优势,因此在野生动物生态学中,对其进行量化已变得很普遍。然而,在能够可靠地解释毛发皮质醇水平之前,首先了解解释种内和种间变异的内在因素至关重要。蝙蝠是一类生态多样的哺乳动物,有助于研究此类变异。鉴于许多蝙蝠物种在其分布范围的部分地区受到威胁或种群数量正在下降,因此需要用于监测群体健康和识别潜在应激源的微创工具,以便有效地指导保护工作。在此,我们描述了来自伯利兹和墨西哥的18种新热带蝙蝠物种毛发皮质醇水平的种内和种间变异来源。我们发现繁殖力是解释蝙蝠毛发皮质醇种间变异的一个重要生态特征。其他生态变量,如群体大小、栖息地耐久性和基础代谢率,并不能解释物种间的毛发皮质醇变异。在个体层面,雌性的毛发皮质醇水平高于雄性,且体重的影响因物种而异。总体而言,我们的研究结果有助于验证并准确应用毛发皮质醇作为自由放养蝙蝠的监测工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9442/8278960/ab8442d06ba6/coab053f1.jpg

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