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跨国保护以预测欧洲未来的植物迁移。

Transnational conservation to anticipate future plant shifts in Europe.

作者信息

Chauvier-Mendes Yohann, Pollock Laura J, Verburg Peter H, Karger Dirk N, Pellissier Loïc, Lavergne Sébastien, Zimmermann Niklaus E, Thuiller Wilfried

机构信息

Swiss Federal Research Institute (WSL), Birmensdorf, Switzerland.

Department of Environmental Systems Science, Eidgenössische Technische Hochschule (ETH) Zürich, Zürich, Switzerland.

出版信息

Nat Ecol Evol. 2024 Mar;8(3):454-466. doi: 10.1038/s41559-023-02287-3. Epub 2024 Jan 22.

Abstract

To meet the COP15 biodiversity framework in the European Union (EU), one target is to protect 30% of its land by 2030 through a resilient transnational conservation network. The European Alps are a key hub of this network hosting some of the most extensive natural areas and biodiversity hotspots in Europe. Here we assess the robustness of the current European reserve network to safeguard the European Alps' flora by 2080 using semi-mechanistic simulations. We first highlight that the current network needs strong readjustments as it does not capture biodiversity patterns as well as our conservation simulations. Overall, we predict a strong shift in conservation need through time along latitudes, and from lower to higher elevations as plants migrate upslope and shrink their distribution. While increasing species, trait and evolutionary diversity, migration could also threaten 70% of the resident flora. In the face of global changes, the future European reserve network will need to ensure strong elevation and latitudinal connections to complementarily protect multifaceted biodiversity beyond national borders.

摘要

为实现欧盟《生物多样性公约》第十五次缔约方大会(COP15)的生物多样性框架目标,其中一个目标是到2030年通过一个具有韧性的跨国保护网络保护其30%的土地。欧洲阿尔卑斯山是该网络的关键枢纽,拥有欧洲一些最广阔的自然区域和生物多样性热点地区。在此,我们使用半机械模拟评估当前欧洲保护区网络到2080年保护欧洲阿尔卑斯山植物群的稳健性。我们首先强调,当前网络需要大幅调整,因为它未能像我们的保护模拟那样捕捉生物多样性模式。总体而言,我们预测随着时间推移,保护需求会沿着纬度发生强烈变化,并且随着植物向上坡迁移并缩小其分布范围,保护需求会从低海拔向高海拔转移。虽然迁移会增加物种、性状和进化多样性,但也可能威胁到70%的本地植物群。面对全球变化,未来的欧洲保护区网络需要确保强大的海拔和纬度连接,以跨境互补保护多方面的生物多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/478d/10927550/a75d22ca10a8/41559_2023_2287_Fig1_HTML.jpg

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