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首页> 外文期刊>Global change biology >What is the role of disturbance in catalyzing spatial shifts in forest composition and tree species biomass under climate change?
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What is the role of disturbance in catalyzing spatial shifts in forest composition and tree species biomass under climate change?

机译:气候变化下,干扰对森林组成和树种生物量空间变化有何作用?

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Abstract Mounting evidence suggests that climate change will cause shifts of tree species range and abundance (biomass). Abundance changes under climate change are likely to occur prior to a detectable range shift. Disturbances are expected to directly affect tree species abundance and composition, and could profoundly influence tree species spatial distribution within a geographical region. However, how multiple disturbance regimes will interact with changing climate to alter the spatial distribution of species abundance remains unclear. We simulated such forest demographic processes using a forest landscape succession and disturbance model (LANDIS‐II) parameterized with forest inventory data in the northeastern United States. Our study incorporated climate change under a high‐emission future and disturbance regimes varying with gradients of intensities and spatial extents. The results suggest that disturbances catalyze changes in tree species abundance and composition under a changing climate, but the effects of disturbances differ by intensity and extent. Moderate disturbances and large extent disturbances have limited effects, while high‐intensity disturbances accelerate changes by removing cohorts of mid‐ and late‐successional species, creating opportunities for early‐successional species. High‐intensity disturbances result in the northern movement of early‐successional species and the southern movement of late‐successional species abundances. Our study is among the first to systematically investigate how disturbance extent and intensity interact to determine the spatial distribution of changes in species abundance and forest composition.
机译:摘要 越来越多的证据表明,气候变化将导致树种范围和丰度(生物量)的变化。气候变化下的丰度变化很可能发生在可探测的范围变化之前。预计干扰将直接影响树种的丰度和组成,并可能深刻影响树种在地理区域内的空间分布。然而,多种干扰机制如何与气候变化相互作用以改变物种丰度的空间分布仍不清楚。我们使用森林景观演替和干扰模型 (LANDIS-II) 模拟了此类森林人口统计过程,该模型使用美国东北部的森林清查数据进行参数化。我们的研究纳入了高排放未来和扰动机制下的气候变化,这些干扰机制随强度和空间范围的梯度而变化。结果表明,在气候变化下,干扰促进了树种丰度和组成的变化,但干扰的影响因强度和程度而异。中度扰动和大范围扰动的影响有限,而高强度扰动通过消除中晚期演替物种群体来加速变化,为早期演替物种创造机会。高强度干扰导致早期演替物种向北移动,后期演替物种丰度向南移动。我们的研究是最早系统地研究干扰程度和强度如何相互作用以确定物种丰度和森林组成变化的空间分布的研究之一。

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