Cardador Laura, Batlle Irene, Barbosa A Márcia, Sillero Neftalí, Reino Luís
Departament de Biologia Evolutiva, Ecologia i Ciències Ambientals, Facultat de Biologia Universitat de Barcelona (UB) Barcelona Spain.
Institut de Recerca de la Biodiversitat (IRBio), Universitat de Barcelona (UB) Barcelona Spain.
Ecol Evol. 2025 Jul 30;15(8):e71863. doi: 10.1002/ece3.71863. eCollection 2025 Aug.
Climate and land cover changes are considered some of the most important drivers of the current biodiversity crisis. The assessment of their combined impacts is starting to attract greater attention. In this study, we assess the role of land cover changes in constraining species range shifts under climate change scenarios in the Iberian Peninsula. We assessed the relative contribution of climate and land cover to the current distribution of 32 northern Iberian bird species using ecological niche models and deviance partitioning. We also assessed how different scenarios of climate change may affect species distributions, with or without changes in land cover. In addition to the independent effect of climate, the current distribution of northern Iberian birds was also shaped by the joint effects that can be indistinguishably attributed to climate or land cover (42% of the explained variations). When changes in climate and land cover were decoupled by allowing only one of them to change concerning current conditions, there was evidence of an effect of land cover in climate-driven predictions: predicted range size shifts were significantly lower when changes in climate were not accompanied by changes in land cover. This highlights the importance of incorporating land cover management alongside climate adaptation strategies in conservation planning.
气候和土地覆盖变化被认为是当前生物多样性危机的一些最重要驱动因素。对其综合影响的评估开始受到更多关注。在本研究中,我们评估了在伊比利亚半岛气候变化情景下,土地覆盖变化在限制物种分布范围转移方面的作用。我们使用生态位模型和偏差分解评估了气候和土地覆盖对伊比利亚半岛北部32种鸟类当前分布的相对贡献。我们还评估了不同气候变化情景在有或没有土地覆盖变化的情况下可能如何影响物种分布。除了气候的独立影响外,伊比利亚半岛北部鸟类的当前分布还受到可无法区分地归因于气候或土地覆盖的联合效应的影响(占解释变异的42%)。当通过仅允许其中一个因素相对于当前条件发生变化来使气候和土地覆盖变化脱钩时,有证据表明土地覆盖在气候驱动的预测中有影响:当气候变化不伴有土地覆盖变化时,预测的分布范围大小变化显著更低。这突出了在保护规划中将土地覆盖管理与气候适应策略相结合的重要性。