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蝴蝶物种对阿尔卑斯山北部的气候变暖与土地利用变化的响应存在差异。

Butterfly species respond differently to climate warming and land use change in the northern Alps.

机构信息

Evolutionary Zoology, Department of Environment and Biodiversity, University of Salzburg, A-5020 Salzburg, Austria.

Department of Ecology and Biogeography, Nicolaus Copernicus University Toruń, 87-100 Toruń, Poland.

出版信息

Sci Total Environ. 2023 Sep 10;890:164268. doi: 10.1016/j.scitotenv.2023.164268. Epub 2023 May 19.

Abstract

Climate change has a worldwide impact on biodiversity and ecosystem functions, in particular by causing shifts in species distributions and changes in species communities. Here, we analyse altitudinal range shifts of 30,604 lowland butterfly and burnet moth records from 119 species over the past seven decades across the federal state of Salzburg (northern Austria) spanning an altitudinal gradient of >2500 m. For each species, we compiled species-specific traits on their ecology, behaviour, and life-cycle. During the study period, the butterflies have shifted their average occurrence and also lower and upper occurrence limits >300 m uphill. This shift is particularly obvious for the last ten years. Habitat generalist and mobile species exhibited strongest and habitat specialist and sedentary species weakest shifts. Our results underline that the effects of climate change have a strong and currently increasing impact on the patterns of species distribution and local community composition. Hence, we confirm the observation that ubiquistic, mobile species with a broad ecological amplitude can cope better with environmental changes than specialist and sedentary species. Furthermore, the strong changes in land use in lowland areas might additionally enhanced this up-hill shift.

摘要

气候变化对生物多样性和生态系统功能具有全球性影响,特别是通过导致物种分布的转移和物种群落的变化。在这里,我们分析了过去 70 年来跨越奥地利北部萨尔茨堡州(奥地利联邦州)海拔梯度>2500 米的 119 种低地蝴蝶和地老虎记录的 30604 个记录的海拔范围变化。对于每种物种,我们都编制了有关其生态学、行为和生命周期的特定物种特征。在研究期间,蝴蝶的平均出现以及较低和较高出现极限已经向上山移动了>300 米。这种变化在过去十年中尤为明显。生境广适性和移动性物种的变化最为明显,而生境专化性和定居性物种的变化最小。我们的结果强调了气候变化的影响对物种分布模式和当地群落组成具有强烈且目前正在增加的影响。因此,我们证实了这样的观察,即具有广泛生态幅度的普遍存在、移动性物种比专化性和定居性物种更能适应环境变化。此外,低地地区土地利用的强烈变化可能进一步增强了这种向上山的转移。

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