Tropical and Mediterranean biodiversity is disproportionately sensitive to land-use and climate change

生物多样性 生物群落 气候变化 地理 土地利用、土地利用的变化和林业 土地利用 全球生物多样性 物种丰富度 地中海气候 全球变化 热带 生物多样性测量 生态学 环境变化 农林复合经营 生态系统 环境科学 生物 生物多样性保护 考古
作者
Tim Newbold,Philippa Oppenheimer,Adrienne Etard,Jessica J. Williams
出处
期刊:Nature Ecology and Evolution [Nature Portfolio]
卷期号:4 (12): 1630-1638 被引量:195
标识
DOI:10.1038/s41559-020-01303-0
摘要

Global biodiversity is undergoing rapid declines, driven in large part by changes to land use and climate. Global models help us to understand the consequences of environmental changes for biodiversity, but tend to neglect important geographical variation in the sensitivity of biodiversity to these changes. Here we test whether biodiversity responses to climate change and land-use change differ among biomes (geographical units that have marked differences in environment and species composition). We find the strongest negative responses to both pressures in tropical biomes and in the Mediterranean. A further analysis points towards similar underlying drivers for the sensitivity to each pressure: we find both greater reductions in species richness in the types of land use most disturbed by humans and more negative predicted responses to climate change in areas of lower climatic seasonality, and in areas where a greater proportion of species are near their upper temperature limit. Within the land most modified by humans, reductions in biodiversity were particularly large in regions where humans have come to dominate the land more recently. Our results will help to improve predictions of how biodiversity is likely to change with ongoing climatic and land-use changes, pointing toward particularly large declines in the tropics where much future agricultural expansion is expected to occur. This finding could help to inform the development of the post-2020 biodiversity framework, by highlighting the under-studied regions where biodiversity losses are likely to be greatest. Analysing responses of biodiversity to changes in land use and climate across global ecoregions, the authors identify strong negative responses in both tropical and Mediterranean biomes, driven primarily by low climatic seasonality and the history of human disturbance.
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