扰动(地质)
植被(病理学)
森林动态
生物量(生态学)
人口统计学的
强迫(数学)
气候变化
环境科学
生态学
适应(眼睛)
环境变化
环境资源管理
地理
气候学
生物
地质学
医学
古生物学
人口学
病理
神经科学
社会学
作者
Nate G. McDowell,Craig D. Allen,Kristina J. Anderson‐Teixeira,Brian H. Aukema,Ben Bond‐Lamberty,Louise Chini,James S. Clark,Michael C. Dietze,Charlotte Grossiord,Adam Hanbury‐Brown,G. C. Hurtt,Robert B. Jackson,Daniel J. Johnson,Lara M. Kueppers,Jeremy W. Lichstein,Kiona Ogle,Benjamin Poulter,Thomas A. M. Pugh,Rupert Seidl,Monica G. Turner
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2020-05-28
卷期号:368 (6494)
被引量:949
标识
DOI:10.1126/science.aaz9463
摘要
Forest dynamics arise from the interplay of environmental drivers and disturbances with the demographic processes of recruitment, growth, and mortality, subsequently driving biomass and species composition. However, forest disturbances and subsequent recovery are shifting with global changes in climate and land use, altering these dynamics. Changes in environmental drivers, land use, and disturbance regimes are forcing forests toward younger, shorter stands. Rising carbon dioxide, acclimation, adaptation, and migration can influence these impacts. Recent developments in Earth system models support increasingly realistic simulations of vegetation dynamics. In parallel, emerging remote sensing datasets promise qualitatively new and more abundant data on the underlying processes and consequences for vegetation structure. When combined, these advances hold promise for improving the scientific understanding of changes in vegetation demographics and disturbances.
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