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Climate change and tree harvest interact to affect future tree species distribution changes

机译:气候变化和树木收获相互作为影响未来的树种分布变化

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摘要

Tree harvest and climate change can interact to have synergistic effects on tree species distribution changes. However, few studies have investigated the interactive effects of tree harvest and climate change on tree species distributions. We assessed the interactive effects of tree harvest and climate change on the distribution of 29 dominant tree species at 270 m resolution in the southern United States, while accounting for species demography, competition, urban growth and natural fire. We simulated tree species distribution changes to year 2100 using a coupled forest dynamic model (LANDIS PRO), ecosystem process model (LINKAGES) and urban growth model (SLEUTH). The distributions of 20 tree species contracted and nine species expanded within the region under climate change by end of 21st century. Distribution changes for all tree species were very slow and lagged behind the changes in potential distributions that were in equilibrium with new climatic conditions. Tree harvest and climate change interacted to affect species occurrences and colonization but not extinction. Occurrence and colonization were mainly affected by tree harvest and its interaction with climate change while extinctions were mainly affected by tree harvest and climate change. Synthesis and applications. Interactive effects of climate and tree harvest acted in the same direction as climate change effects on species occurrences, thereby accelerating climate change induced contraction or expansion of distributions. The overall interactive effects on species colonization were negative, specifically with positive interactive effects at leading edges of species ranges and negative interactive effects at trailing edges. Tree harvest generally did not interact with climate change to greatly facilitate or ameliorate species extinction. Our modelling results highlight the importance of considering disturbances and species demography (e.g. post-harvest regeneration dynamics) when predicting changes in tree distributions.
机译:树收获和气候变化可以相互作用对树种分布变化具有协同作用。然而,很少有研究已经调查了树木种植的树木收获和气候变化的互动效果。我们评估了树收获和气候变化对美国南部270米分辨率的29种显性树种分配的互动影响,同时占物种人口,竞争,城市成长和自然火灾。我们使用耦合森林动态模型(Landis Pro),生态系统流程模型(联系)和城市生长模型(Sleuth)模拟树种分布改变为2100。在21世纪末,在气候变化下,20种树种的分布和九种物种扩大。所有树种的分布变化非常慢,落后于均衡的潜在分布的变化,具有新的气候条件。树收获和气候变化相互作用,影响物种出现和殖民化但未灭绝。发生和殖民化主要受树收获的影响,其与气候变化的互动,而灭绝主要受树收获和气候变化的影响。合成和应用。气候和树木收获的互动效果在与气候变化对物种发生的影响相同的方向,从而加速气候变化引起的收缩或分布扩张。物种定植的整体互动效果是阴性的,具体地具有在物种范围的前缘和尾部边缘处的负交互式效果的正互动效果。树收获一般没有与气候变化相互作用,以极大地促进或改善物种灭绝。我们的建模结果突出了在预测树分布的变化时考虑干扰和物种人口(例如,收获后再生动力学)的重要性。

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