Impacts of landscape patterns on plant species diversity at a global scale

生物多样性 生态学 空间生态学 生物扩散 植被(病理学) 景观生态学 生物量(生态学) 植物群落 地理 扰动(地质) 物种多样性 生物 栖息地 物种丰富度 人口 古生物学 人口学 社会学 病理 医学
作者
Hanni Jin,Jing Xu,Yu Peng,Jiaxun Xin,Nanyi Peng,Yanyi Li,Jihong Huang,Ruiqiang Zhang,Chen Li,Yuanshan Wu,Beini Gong,Ronghui Wang
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:896: 165193-165193 被引量:14
标识
DOI:10.1016/j.scitotenv.2023.165193
摘要

Landscape patterns are important drivers of biodiversity. Owing to differences in vegetation types, sampling methods, diversity measures, spatial scales, and landscape levels, the impact of landscape patterns on biodiversity remains widely debated. Using a global standardized plant community database and land use and land cover maps at 30-m resolution, for the period 1990-2017, we calculated plant species α- and β-diversity, and landscape metrics at patch- and landscape-levels, and discerned the direct and indirect impacts of landscape patterns on plant species diversity based on environmental factors, namely climate, spatial features, and human disturbance. We found that landscape patterns exhibited the main indirect effects, whereas climate factors exhibited dominant direct effects on plant α-diversity via the direct effects of patch patterns and functional traits. With respect to β-diversity, landscape-level patterns exerted more direct than indirect effects. These effects are strongly dependent on scale. Landscape- and patch-level patterns had opposite effects on plant diversity, depending on their composition and spatial structure, demonstrating that their effects could be mediated by one another. The adaptation of plants to landscape patterns is mainly through variations in leaf area, plant height, specific leaf area, stem density, seed biomass, and other seed-dispersal traits, which vary across vegetation types. Our findings highlight the importance of functional traits and diversity in understanding the mechanism by which landscape patterns influence plant species diversity; accordingly, we recommend balancing the spatial structure of patch- and landscape-level patterns to enhance variation in functional traits, and, ultimately, to maintain global plant diversity.
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