优势有蹄类动物的移动行为是成功适应特大火灾后迅速变化的地貌的基础。

IF 3.4 1区 生物学 Q2 ECOLOGY
Kendall L Calhoun, Thomas Connor, Kaitlyn M Gaynor, Amy Van Scoyoc, Alex McInturff, Samantha E S Kreling, Justin S Brashares
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引用次数: 0

摘要

背景:运动在动物物种适应环境突变方面发挥着关键作用。人为的气候和土地利用变化加快了包括特大火灾在内的一些极端干扰的发生频率。这些特大火灾极大地改变了生态系统,对一些物种适应快速变化的景观的能力提出了挑战。有蹄类动物及其运动行为在世界各地易发生火灾的生态系统功能中发挥着核心作用。以往的研究表明,行为可塑性是大型有蹄类动物能否有效适应近期环境变化的一个重要机制。有蹄类动物可能会通过调整自己的运动和行为来应对特大火灾的直接影响,但这些反应是如何在扰动后持续或随着时间的推移而变化的,人们对此知之甚少:方法:我们研究了具有很强地点忠诚度的生态优势有蹄类动物--哥伦布黑尾鹿(Odocoileus hemionus columbianus)如何调整其运动和行为,以应对特大火灾后地貌的改变。为此,我们收集了 21 头雌鹿在一年中的 GPS 数据,以比较家园范围随时间的变化,并使用资源选择函数(RSF)和隐马尔可夫运动模型(HMM)来评估行为和栖息地选择的变化:结果:我们发现了令人信服的证据,证明鹿个体在应对特大火灾时具有适应能力。在特大火灾发生后,鹿会立即避开暴露和严重烧毁的地区,因为这些地区缺乏草料,而且可能面临更大的捕食风险,但它们后来改变了这些行为,选择了烧毁严重程度较高的地区,这可能是为了利用更多的草料:这些结果表明,尽管鹿对栖息地有很高的忠诚度,但它们可以通过改变地貌来追踪捕食者遭遇风险和资源可用性的快速变化。这种在极端干扰后对运动和行为的成功调整有助于在更广泛的生态尺度上促进恢复力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Movement behavior in a dominant ungulate underlies successful adjustment to a rapidly changing landscape following megafire.

Background: Movement plays a key role in allowing animal species to adapt to sudden environmental shifts. Anthropogenic climate and land use change have accelerated the frequency of some of these extreme disturbances, including megafire. These megafires dramatically alter ecosystems and challenge the capacity of several species to adjust to a rapidly changing landscape. Ungulates and their movement behaviors play a central role in the ecosystem functions of fire-prone ecosystems around the world. Previous work has shown behavioral plasticity is an important mechanism underlying whether large ungulates are able to adjust to recent changes in their environments effectively. Ungulates may respond to the immediate effects of megafire by adjusting their movement and behavior, but how these responses persist or change over time following disturbance is poorly understood.

Methods: We examined how an ecologically dominant ungulate with strong site fidelity, Columbian black-tailed deer (Odocoileus hemionus columbianus), adjusted its movement and behavior in response to an altered landscape following a megafire. To do so, we collected GPS data from 21 individual female deer over the course of a year to compare changes in home range size over time and used resource selection functions (RSFs) and hidden Markov movement models (HMMs) to assess changes in behavior and habitat selection.

Results: We found compelling evidence of adaptive capacity across individual deer in response to megafire. Deer avoided exposed and severely burned areas that lack forage and could be riskier for predation immediately following megafire, but they later altered these behaviors to select areas that burned at higher severities, potentially to take advantage of enhanced forage.

Conclusions: These results suggest that despite their high site fidelity, deer can navigate altered landscapes to track rapid shifts in encounter risk with predators and resource availability. This successful adjustment of movement and behavior following extreme disturbance could help facilitate resilience at broader ecological scales.

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来源期刊
Movement Ecology
Movement Ecology Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
6.60
自引率
4.90%
发文量
47
审稿时长
23 weeks
期刊介绍: Movement Ecology is an open-access interdisciplinary journal publishing novel insights from empirical and theoretical approaches into the ecology of movement of the whole organism - either animals, plants or microorganisms - as the central theme. We welcome manuscripts on any taxa and any movement phenomena (e.g. foraging, dispersal and seasonal migration) addressing important research questions on the patterns, mechanisms, causes and consequences of organismal movement. Manuscripts will be rigorously peer-reviewed to ensure novelty and high quality.
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