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Fire modulates climate change response of simulated aspen distribution across topoclimatic gradients in a semi-arid montane landscape

机译:火灾调制了半干旱山地景观中顶部叶片梯度模拟白杨分布的气候变化响应

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摘要

Content Changing aspen distribution in response to climate change and fire is a major focus of biodiversity conservation, yet little is known about the potential response of aspen to these two driving forces along topoclimatic gradients.Objective This study is set to evaluate how aspen distribution might shift in response to different climate-fire scenarios in a semi-arid montane landscape, and quantify the influence of fire regime along topoclimatic gradients.Methods We used a novel integration of a forest landscape succession and disturbance model (LAN DIS-II) with a fine-scale climatic water deficit approach to simulate dynamics of aspen and associated conifer and shrub species over the next 150 years under various climate-fire scenarios.Results Simulations suggest that many aspen stands could persist without fire for centuries under current climate conditions. However, a simulated 2–5ºC increase in temperature caused a substantial reduction of aspen coverage at lower elevations and a modest increase at upper elevations, leading to an overall reduction of aspen range at the landscape level. Increasing fire activity may favor aspen increase at its upper elevation limits adjacent to coniferous forest, but may also favor reduction of aspen at lower elevation limits adjacent to xeric shrubland.Conclusions Our study highlights the importance of incorporating fine-scale terrain effects on climatic water deficit and ecohydrology when modeling species distribution response to climate change. This modeling study suggests that climate mitigation and adaptation strategies that use fire would benefit from consideration of spatial context at landscape scales.
机译:在应对气候变化和火灾内容更改白杨分布是生物多样性保护的一大焦点,但很少有人知道白杨沿topoclimatic gradients.Objective这两个驱动力这项研究被设置为评估如何白杨分布可能转向的潜在响应因应不同的气候火灾场景在半干旱山地景观,和量化沿着topoclimatic gradients.Methods火体系的影响,我们使用的森林景观继承和扰动模型(LAN DIS-II)的一种新型的集成用细进制气候水分亏缺的方法来白杨和相关的针叶树和灌木的动态模拟在在各种气候火scenarios.Results模拟了150年表明,许多白杨立场可能一失足成千古恨坚持当前气候条件下个世纪。然而,在温度的模拟2-5ºC增长导致在低海拔的显着减少白杨覆盖,并在上部隆起的适度增加,导致的白杨范围在景观水平的整体降低。提高消防活动可能有利于在毗邻针叶林其上升降极限白杨增加,也可以在低海拔有利于减少白杨对气候缺水相邻的限制,以旱生shrubland.Conclusions我们的研究亮点结合精细尺度地形效应的重要性和生态水文建模时物种分布应对气候变化。这种建模研究表明,用火将考虑空间环境的景观尺度受益,气候减缓和适应战略。

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