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生物物理模型准确地描述了一种小型入侵性雀形目鸟类的热能学特征。

Biophysical models accurately characterize the thermal energetics of a small invasive passerine bird.

作者信息

Sentís Marina, Pacioni Cesare, De Cuyper Annelies, Janssens Geert P J, Lens Luc, Strubbe Diederik

机构信息

Terrestrial Ecology Unit, Department of Biology, Faculty of Sciences, Ghent University, 9000 Ghent, Belgium.

Department of Veterinary and Biosciences, Faculty of Veterinary Medicine, Ghent University, 9820 Merelbeke, Belgium.

出版信息

iScience. 2023 Aug 26;26(10):107743. doi: 10.1016/j.isci.2023.107743. eCollection 2023 Oct 20.

Abstract

Effective management of invasive species requires accurate predictions of their invasion potential in different environments. By considering species' physiological tolerances and requirements, biophysical mechanistic models can potentially deliver accurate predictions of where introduced species are likely to establish. Here, we evaluate biophysical model predictions of energy use by comparing them to experimentally obtained energy expenditure (EE) and thermoneutral zones (TNZs) for the common waxbill , a small-bodied avian invader. We show that biophysical models accurately predict TNZ and EE and that they perform better than traditional time-energy budget methods. Sensitivity analyses indicate that body temperature, metabolic rate, and feather characteristics were the most influential traits affecting model accuracy. This evaluation of common waxbill energetics represents a crucial step toward improved parameterization of biophysical models, eventually enabling accurate predictions of invasion risk for small (sub)tropical passerines.

摘要

有效管理入侵物种需要准确预测它们在不同环境中的入侵潜力。通过考虑物种的生理耐受性和需求,生物物理机制模型有可能准确预测外来物种可能建立种群的地点。在此,我们通过将生物物理模型对能量利用的预测与实验获得的普通梅花雀(一种小型鸟类入侵者)的能量消耗(EE)和热中性区(TNZ)进行比较,来评估这些预测。我们表明,生物物理模型能够准确预测热中性区和能量消耗,并且其表现优于传统的时间 - 能量预算方法。敏感性分析表明,体温、代谢率和羽毛特征是影响模型准确性的最具影响力的特征。对普通梅花雀能量学的这种评估是朝着改进生物物理模型参数化迈出的关键一步,最终能够准确预测小型(亚)热带雀形目鸟类的入侵风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d31/10504485/35c2b737b29d/gr2.jpg

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