哥伦比亚海拔梯度上两种截然不同栖息地的热带无尾类的热关系

IF 1.1 Q3 BIOLOGY
Katalina Gutiérrez Hernández, Carlos Alberto Galindo, Jorge Luis, Turriago González, Manuel Hernando Bernal Bautista, Carlos Alberto, Jorge Galindo, Luis Turriago, Gonzalez Manuel, Hernando, Carlos Alberto Galindo Martínez, Turriago González
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引用次数: 0

摘要

无尾类是外温动物,极易受到环境温度变化的影响,而环境温度会随着海拔高度和热带山区不同栖息地的变化而变化。本研究旨在评估哥伦比亚海拔梯度上两种不同栖息地(开阔地和森林栖息地)夜间无尾类动物体温(BT)的变化。我们测量了安第斯山脉三个海拔高度带的露天和森林栖息地中 11 个物种的 135 只成年蛙的环境温度(基质和空气)和 BT。BT与环境温度有显著的正相关关系,并且对底质温度的热依赖性高于空气温度,这表明无尾类是热变型动物,可能是变温动物。此外,两种栖息地的无尾类的BT均随海拔升高而降低,但开阔栖息地物种的BT高于森林物种。因此,环境温度对生活在类似海拔高度的无尾类动物的影响并不相同,因为栖息地的类型对它们的 BT 有很大影响。这些信息对于更好地了解有尾目动物的热生物学特性、完善保护策略以及提高环境数据的预测能力以预报气候变化对两栖类等小型外温动物的影响非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal Relationship in Tropical Anurans from Two Contrasting Habitats Along an Elevation Gradient in Colombia
Anurans are ectothermic organisms highly susceptible to variations in the environmental temperature that changes with elevation and between habitats in tropical mountains. The aim of this study was to evaluate the variation of body temperature (BT) of nocturnal anurans from two contrasting habitats (open and forest habitats) along an elevation gradient in Colombia. We measured the environmental temperatures (substrate and air) and BT of 135 adult frogs of 11 species from open and forest habitats at three elevational zones of an Andean Mountain. The BT had a positive and significant relationship with environmental temperatures and showed a higher thermal dependence for substrate than air temperature, which suggests that anurans are thermoconformers and potentially tigmotherms. Additionally, BT of anurans from both habitats decreased with the elevation, but species from open habitats had a higher BT than forest species. Therefore, the impact of environmental temperatures on anurans that live at a similar altitude level is not the same, as the type of habitat has a strong influence on their BT. This information is important to a better understanding of anuran thermal biology, refine conservation strategies, and to improve the predictive power of environmental data in forecasting the effects of climate change on small ectotherms such as amphibians.
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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
40
审稿时长
20 weeks
期刊介绍: Tropical Life Sciences Research (TLSR) formerly known as Journal of Bioscience seeks to publish relevant ideas and knowledge addressing vital life sciences issues in the tropical region. The Journal’s scope is interdisciplinary in nature and covers any aspects related to issues on life sciences especially from the field of biochemistry, microbiology, biotechnology and animal, plant, environmental, biomedical and pharmaceutical sciences. TLSR practices double blind peer review system to ensure and maintain the good quality of articles published in this journal. Two issues are published annually in printed and electronic form. TLSR also accepts review articles, experimental papers and short communications. The Chief Editor would like to invite researchers to use this journal as a mean to rapidly promote their research findings.
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