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气候变化的季节对比效应影响了耐寒物种的密度。

Contrasting seasonal effects of climate change influence density in a cold-adapted species.

机构信息

U.S. Fish and Wildlife Service, Fort Collins, Colorado, USA.

Wildlife Biology Program, University of Montana, Missoula, Montana, USA.

出版信息

Glob Chang Biol. 2022 Nov;28(21):6228-6238. doi: 10.1111/gcb.16352. Epub 2022 Aug 22.

Abstract

Many ecological processes are profoundly influenced by abiotic factors, such as temperature and snow. However, despite strong evidence linking shifts in these ecological processes to corresponding shifts in abiotic factors driven by climate change, the mechanisms connecting population size to season-specific climate drivers are little understood. Using a 21-year dataset and a Bayesian state space model, we identified biologically informed seasonal climate covariates that influenced densities of snowshoe hares (Lepus americanus), a cold-adapted boreal herbivore. We found that snow and temperature had strong but conflicting season-dependent effects. Reduced snow duration in spring and fall and warmer summers were associated with lowered hare density, whereas warmer winters were associated with increased density. When modeled simultaneously and under two climate change scenarios, the negative effects of reduced fall and spring snow duration and warmer summers overwhelm the positive effect of warmer winters, producing projected population declines. Ultimately, the contrasting population-level impacts of climate change across seasons emphasize the critical need to examine the entire annual climate cycle to understand potential long-term population consequences of climate change.

摘要

许多生态过程受到非生物因素的深刻影响,如温度和雪。然而,尽管有强有力的证据表明这些生态过程的变化与气候变化驱动的相应非生物因素的变化有关,但将种群大小与季节性气候驱动因素联系起来的机制还知之甚少。利用 21 年的数据集和贝叶斯状态空间模型,我们确定了生物相关的季节性气候协变量,这些协变量影响雪兔(Lepus americanus)的密度,雪兔是一种适应寒冷的北方草食动物。我们发现,雪和温度具有强烈但相互矛盾的季节性影响。春季和秋季雪期缩短和夏季变暖与野兔密度降低有关,而冬季变暖与密度增加有关。当在两种气候变化情景下同时建模时,秋季和春季雪期缩短以及夏季变暖的负面影响超过了冬季变暖的积极影响,导致预测的种群减少。最终,气候变化在不同季节对种群水平的影响形成鲜明对比,强调了必须研究整个年度气候周期,以了解气候变化对潜在长期种群后果的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a42f/9804553/5fed9335bf74/GCB-28-6228-g001.jpg

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