GSTDTAP  > 气候变化
DOI10.1111/gcb.13847
How disturbance, competition, and dispersal interact to prevent tree range boundaries from keeping pace with climate change
Liang, Yu1,2; Duveneck, Matthew J.2; Gustafson, Eric J.3; Serra-Diaz, Josep M.2,4; Thompson, Jonathan R.2
2018
发表期刊GLOBAL CHANGE BIOLOGY
ISSN1354-1013
EISSN1365-2486
出版年2018
卷号24期号:1页码:E335-E351
文章类型Article
语种英语
国家Peoples R China; USA; Denmark
英文摘要

Climate change is expected to cause geographic shifts in tree species' ranges, but such shifts may not keep pace with climate changes because seed dispersal distances are often limited and competition-induced changes in community composition can be relatively slow. Disturbances may speed changes in community composition, but the interactions among climate change, disturbance and competitive interactions to produce range shifts are poorly understood. We used a physiologically based mechanistic landscape model to study these interactions in the northeastern United States. We designed a series of disturbance scenarios to represent varied disturbance regimes in terms of both disturbance extent and intensity. We simulated forest succession by incorporating climate change under a high-emissions future, disturbances, seed dispersal, and competition using the landscape model parameterized with forest inventory data. Tree species range boundary shifts in the next century were quantified as the change in the location of the 5th (the trailing edge) and 95th (the leading edge) percentiles of the spatial distribution of simulated species. Simulated tree species range boundary shifts in New England over the next century were far below (usually < 20 km) that required to track the velocity of temperature change (usually more than 110 km over 100 years) under a high-emissions scenario. Simulated species` ranges shifted northward at both the leading edge (northern boundary) and trailing edge (southern boundary). Disturbances may expedite species' recruitment into new sites, but they had little effect on the velocity of simulated range boundary shifts. Range shifts at the trailing edge tended to be associated with photosynthetic capacity, competitive ability for light and seed dispersal ability, whereas shifts at the leading edge were associated only with photosynthetic capacity and competition for light. This study underscores the importance of understanding the role of interspecific competition and disturbance when studying tree range shifts.


英文关键词climate change competition disturbance Land Use Plus (LU+) LANDIS-II PnET-Succession seed dispersal tree range shift
领域气候变化 ; 资源环境
收录类别SCI-E
WOS记录号WOS:000426506100026
WOS关键词SPECIES DISTRIBUTIONS ; LANDIS-II ; BIOTIC INTERACTIONS ; FOREST COMPOSITION ; FIRE DISTURBANCE ; CHANGE IMPACTS ; UNITED-STATES ; GLOBAL CHANGE ; SHIFTS ; MODEL
WOS类目Biodiversity Conservation ; Ecology ; Environmental Sciences
WOS研究方向Biodiversity & Conservation ; Environmental Sciences & Ecology
引用统计
被引频次:96[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/16684
专题气候变化
资源环境科学
作者单位1.Chinese Acad Sci, Inst Appl Ecol, CAS Key Lab Forest Ecol & Management, Shenyang, Liaoning, Peoples R China;
2.Harvard Univ, Harvard Forest, Petersham, MA USA;
3.US Forest Serv, Inst Appl Ecosyst Studies, Northern Res Stn, USDA, Rhinelander, WI USA;
4.Aarhus Univ, Ecoinformat & Biodivers Sect, Dept Biosci, Aarhus C, Denmark
推荐引用方式
GB/T 7714
Liang, Yu,Duveneck, Matthew J.,Gustafson, Eric J.,et al. How disturbance, competition, and dispersal interact to prevent tree range boundaries from keeping pace with climate change[J]. GLOBAL CHANGE BIOLOGY,2018,24(1):E335-E351.
APA Liang, Yu,Duveneck, Matthew J.,Gustafson, Eric J.,Serra-Diaz, Josep M.,&Thompson, Jonathan R..(2018).How disturbance, competition, and dispersal interact to prevent tree range boundaries from keeping pace with climate change.GLOBAL CHANGE BIOLOGY,24(1),E335-E351.
MLA Liang, Yu,et al."How disturbance, competition, and dispersal interact to prevent tree range boundaries from keeping pace with climate change".GLOBAL CHANGE BIOLOGY 24.1(2018):E335-E351.
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