Plant diversity dynamics over space and time in a warming Arctic

物种丰富度 生态学 北极的 生物多样性 植物群落 维管植物 北极植被 生态系统 灌木 气候变化 物种多样性 栖息地 地理 生物 冻土带
作者
Mariana García Criado,Isla H. Myers‐Smith,Anne D. Bjorkman,Sarah C. Elmendorf,Signe Normand,Peter Aastrup,Rien Aerts,Juha M. Alatalo,Lander Baeten,Robert G. Björk,Mats P. Björkman,Noémie Boulanger‐Lapointe,Ethan E. Butler,Elisabeth J. Cooper,J. Hans C. Cornelissen,Gergana N. Daskalova,Belén Fadrique,Bruce C. Forbes,Greg H. R. Henry,Robert D. Hollister
出处
期刊:Nature [Nature Portfolio]
卷期号:642 (8068): 653-661 被引量:20
标识
DOI:10.1038/s41586-025-08946-8
摘要

The Arctic is warming four times faster than the global average1 and plant communities are responding through shifts in species abundance, composition and distribution2-4. However, the direction and magnitude of local changes in plant diversity in the Arctic have not been quantified. Using a compilation of 42,234 records of 490 vascular plant species from 2,174 plots across the Arctic, here we quantified temporal changes in species richness and composition through repeat surveys between 1981 and 2022. We also identified the geographical, climatic and biotic drivers behind these changes. We found greater species richness at lower latitudes and warmer sites, but no indication that, on average, species richness had changed directionally over time. However, species turnover was widespread, with 59% of plots gaining and/or losing species. Proportions of species gains and losses were greater where temperatures had increased the most. Shrub expansion, particularly of erect shrubs, was associated with greater species losses and decreasing species richness. Despite changes in plant composition, Arctic plant communities did not become more similar to each other, suggesting no biotic homogenization so far. Overall, Arctic plant communities changed in richness and composition in different directions, with temperature and plant-plant interactions emerging as the main drivers of change. Our findings demonstrate how climate and biotic drivers can act in concert to alter plant composition, which could precede future biodiversity changes that are likely to affect ecosystem function, wildlife habitats and the livelihoods of Arctic peoples5,6.
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