阿尔卑斯羚羊栖息地利用随天气变化的变化。

IF 3.4 1区 生物学 Q2 ECOLOGY
Pia Anderwald, Sven Buchmann, Thomas Rempfler, Flurin Filli
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引用次数: 0

摘要

背景:气候变化导致的天气模式变化在高山环境中加速,但高山也提供了广泛的栖息地和潜在的避难区。为了确定山区有蹄类动物未来的关键栖息地以进行有效保护,必须了解它们在不受人类干扰的情况下对不断变化的天气条件的空间反应:方法:我们使用综合阶跃选择函数,研究了在一个严格保护区内,55 只戴有 GPS 颈圈的成年高山羚羊在夏季和 42 只在冬季的季节性栖息地使用随天气和时间变化而发生的细微变化:羚羊对降水量和风速增加的反应主要是在夏季和冬季向低海拔地区迁移。然而,对夏季高温的反应主要是喜欢增加树木覆盖密度和北坡。积雪深度对栖息地的选择几乎没有影响,冬季无论温度如何,羚羊都喜欢南坡。与白天相比,羚羊在两个季节都会在夜间向更陡的斜坡和更低的海拔迁移,夏季则向更开阔的地区迁移。随着树木覆盖密度的增加,陡坡也成为羚羊的首选:羚羊在选择栖息地时会进行适应性的细微调整,以实现有效的体温调节,并在夏季和冬季保护自己免受极端天气和捕食风险的影响。因此,预计羚羊对气候变化的运动反应要比简单的分布海拔变化复杂得多。尤其不能低估森林植被的作用,因为森林植被似乎为它们提供了重要的热庇护栖息地,使其免受夏季高温的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Weather-dependent changes in habitat use by Alpine chamois.

Background: Alterations in weather patterns due to climate change are accelerated in alpine environments, but mountains also provide a wide range of niches and potential refuge areas. In order to identify future critical habitat for mountain ungulates for effective protection, it is important to understand their spatial responses to changing weather conditions without movement constraints by human disturbance.

Methods: Using integrated step selection functions, we investigated fine-scale changes in seasonal habitat use in response to weather and time of day for 55 GPS-collared adult Alpine chamois in summer and 42 individuals in winter in a strictly protected area.

Results: Chamois reacted to increasing precipitation and wind speeds primarily by moving to lower elevations in summer and winter. However, reactions to high summer temperatures predominantly involved preferences for increasing tree cover density and northerly slopes. Snow depth had little effect on habitat choice, and southerly slopes were preferred in winter regardless of temperature. At night, chamois moved to steeper slopes and lower elevations than during daytime in both seasons, and to more open areas in summer. Steeper slopes were also preferred with increasing tree cover density.

Conclusions: Chamois employ adaptive fine-scale adjustments in their habitat choice consistent with respect to efficient thermoregulation and protection from both weather extremes and predation risk in summer and winter. Movement responses to climate change are therefore expected to be far more complex than simple altitudinal changes in distribution. Particularly the role of forest cover must not be underestimated, as it appears to provide important thermal refuge habitat from high summer temperatures.

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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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