Decadal changes in fire frequencies shift tree communities and functional traits

断面积 生态系统 火情 生态学 生物量(生态学) 环境科学 温带气候 植被(病理学) 营养物 温带雨林 全球变化 温带森林 火生态学 扰动(地质) 环境变化 陆地生态系统 生物 大气科学 气候变化 地质学 医学 古生物学 病理
作者
Adam F. A. Pellegrini,Tyler Refsland,Colin Averill,César Terrer,A. Carla Staver,Dale G. Brockway,Anthony C. Caprio,Wayne K. Clatterbuck,Corli Coetsee,James D. Haywood,Sarah E. Hobbie,William A. Hoffmann,John S. Kush,Tom Lewis,W. Keith Moser,Steven T. Overby,William P. Patterson,Kabir Peay,Peter B. Reich,Casey M. Ryan
出处
期刊:Nature Ecology and Evolution [Nature Portfolio]
卷期号:5 (4): 504-512 被引量:73
标识
DOI:10.1038/s41559-021-01401-7
摘要

Global change has resulted in chronic shifts in fire regimes. Variability in the sensitivity of tree communities to multi-decadal changes in fire regimes is critical to anticipating shifts in ecosystem structure and function, yet remains poorly understood. Here, we address the overall effects of fire on tree communities and the factors controlling their sensitivity in 29 sites that experienced multi-decadal alterations in fire frequencies in savanna and forest ecosystems across tropical and temperate regions. Fire had a strong overall effect on tree communities, with an average fire frequency (one fire every three years) reducing stem density by 48% and basal area by 53% after 50 years, relative to unburned plots. The largest changes occurred in savanna ecosystems and in sites with strong wet seasons or strong dry seasons, pointing to fire characteristics and species composition as important. Analyses of functional traits highlighted the impact of fire-driven changes in soil nutrients because frequent burning favoured trees with low biomass nitrogen and phosphorus content, and with more efficient nitrogen acquisition through ectomycorrhizal symbioses. Taken together, the response of trees to altered fire frequencies depends both on climatic and vegetation determinants of fire behaviour and tree growth, and the coupling between fire-driven nutrient losses and plant traits. Using tree community data from 29 tropical and temperate sites that have experienced multi-decadal alterations in fire frequency, the authors show repeated burning generally reduces stem density and basal area, with most pronounced effects in savanna ecosystems and in sites with strong wet seasons or strong dry seasons.
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