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变暖支撑着温带淡水和陆地群落中的社区更替。

Warming underpins community turnover in temperate freshwater and terrestrial communities.

机构信息

Department of Aquatic Ecology, Eawag (Swiss Federal Institute of Aquatic Science and Technology) Überlandstrasse 133, 8600, Dübendorf, Switzerland.

Swiss Federal Institute for Forest, Snow and Landscape Research (WSL), Flüelastrasse 11, 7260, Davos Dorf, Switzerland.

出版信息

Nat Commun. 2024 Mar 1;15(1):1921. doi: 10.1038/s41467-024-46282-z.

Abstract

Rising temperatures are leading to increased prevalence of warm-affinity species in ecosystems, known as thermophilisation. However, factors influencing variation in thermophilisation rates among taxa and ecosystems, particularly freshwater communities with high diversity and high population decline, remain unclear. We analysed compositional change over time in 7123 freshwater and 6201 terrestrial, mostly temperate communities from multiple taxonomic groups. Overall, temperature change was positively linked to thermophilisation in both realms. Extirpated species had lower thermal affinities in terrestrial communities but higher affinities in freshwater communities compared to those persisting over time. Temperature change's impact on thermophilisation varied with community body size, thermal niche breadth, species richness and baseline temperature; these interactive effects were idiosyncratic in the direction and magnitude of their impacts on thermophilisation, both across realms and taxonomic groups. While our findings emphasise the challenges in predicting the consequences of temperature change across communities, conservation strategies should consider these variable responses when attempting to mitigate climate-induced biodiversity loss.

摘要

气温上升导致生态系统中暖亲和物种的流行率增加,这被称为嗜热化。然而,影响不同分类群和生态系统嗜热化率变化的因素,特别是具有高多样性和高种群下降的淡水群落,仍然不清楚。我们分析了来自多个分类群的 7123 个淡水和 6201 个陆地,主要是温带群落随时间的组成变化。总的来说,温度变化与两个领域的嗜热化都呈正相关。与随时间持续存在的物种相比,陆地群落中灭绝物种的耐热性较低,而淡水群落中的耐热性较高。温度变化对嗜热化的影响因群落体型、热生态位宽度、物种丰富度和基线温度而异;这些相互作用的影响在方向和程度上对嗜热化都具有独特性,无论是在两个领域还是在分类群中。虽然我们的研究结果强调了预测跨群落温度变化后果的挑战,但在试图减轻气候引起的生物多样性丧失时,保护策略应该考虑这些可变的响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/874d/10907361/31629ae9cdf7/41467_2024_46282_Fig1_HTML.jpg

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