水的供应和温度是热带蛙类蒸发失水的调节因素。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Bryan H Juarez, Isaac Quintanilla-Salinas, Madison P Lacey, Lauren A O'Connell
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引用次数: 0

摘要

由于失水带来的风险,水在大多数陆生生物的生态学中扮演着重要角色。具体来说,陆生动物的失水是通过呼吸组织或表皮蒸发进行的。两栖动物是研究非生物因素如何影响失水的理想系统,因为它们的身体通常会对环境变化做出快速反应。虽然温度对许多类群失水的影响已众所周知,但我们仍在了解温度与湿度或水的可用性如何共同影响失水。在这里,我们使用贝叶斯框架测试了站立水源(可用性)和温度(26 和 36°C)如何共同影响无尾两栖动物的失水。我们还提出了一个概念模型,用于考虑水源和温度如何相互作用,从而导致体质量变化。在考虑了系统发育和时间自相关性之后,我们确定了不同变量(失水率和摄水率、温度和体型)如何影响三种热带蛙类(Rhinella marina、Phyllobates terribilis 和 Xenopus tropicalis)的体重。我们发现,所有变量都会影响体质量的变化,其中P. terribilis和X. tropicalis之间的相似性更大,但只有温度对P. terribilis有显著影响。此外,我们还描述了 P. terribilis 的行为可能如何影响其水分预算。这项研究显示了生物如何在不同环境中管理水分预算,对我们建立蒸发失水和物种分布模型非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Water Availability and Temperature as Modifiers of Evaporative Water Loss in Tropical Frogs.

Water plays a notable role in the ecology of most terrestrial organisms due to the risks associated with water loss. Specifically, water loss in terrestrial animals happens through evaporation across respiratory tissues or the epidermis. Amphibians are ideal systems for studying how abiotic factors impact water loss since their bodies often respond quickly to environmental changes. While the effect of temperature on water loss is well known across many taxa, we are still learning how temperature in combination with humidity or water availability affects water loss. Here, we tested how standing water sources (availability) and temperature (26 and 36°C) together affect water loss in anuran amphibians using a Bayesian framework. We also present a conceptual model for considering how water availability and temperature may interact, resulting in body mass changes. After accounting for phylogenetic and time autocorrelation, we determined how different variables (water loss and uptake rates, temperature, and body size) affect body mass in three species of tropical frogs (Rhinella marina, Phyllobates terribilis, and Xenopus tropicalis). We found that all variables impacted body mass changes, with greater similarities between P. terribilis and X. tropicalis, but temperature only showed a notable effect in P. terribilis. Furthermore, we describe how the behavior of P. terribilis might affect its water budget. This study shows how organisms might manage water budgets across different environments and is important for developing models of evaporative water loss and species distributions.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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