Ab'/> Tree loss impacts on ecological connectivity: Developing models for assessment
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Tree loss impacts on ecological connectivity: Developing models for assessment

机译:树损失对生态连通性的影响:开发评估模型

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AbstractTrees along linear features are important landscape features, and their loss threatens ecological connectivity. Until recently, trees outside of woodlands (TOWs) were largely unmapped however; the development of innovation mapping techniques provides opportunities to understand the distribution of such trees and to apply spatially explicit models to explore the importance of trees for connectivity. In this study, we demonstrate the utility of models when investigating tree loss and impacts on connectivity. Specifically, we investigated the consequences of tree loss due to the removal of roadside trees, a common management response for diseased or damaged trees, on wider landscape functional connectivity. We simulated the loss of roadside trees within six focal areas of the south east of the UK. We used a spatially explicit individual-based modelling platform, RangeShifter, to model the movement of 81 hypothetical actively dispersing woodland breeding species across these agriculturally fragmented landscapes. We investigated the extent to which removal of trees, from roadsides within the wider landscape, affected the total number of successful dispersers in any given year and the number of breeding woodlands that became isolated through time. On average roadside trees accounted for <2% of land cover, but removing 60% of them (~1.2% of land cover) nevertheless decreased the number of successful dispersers by up to 17%. The impact was greatest when roadside trees represented a greater proportion of canopy cover. The study therefore demonstrates that models such as RangeShifter can provide valuable tools for assessing the consequences of losing trees outside of woodlands.<
机译:<![cdata [ 抽象 树木沿线特征是重要的景观功能,并且他们的损失威胁到生态连接。直到最近,林地外面的树木(丝束)之外的树木很大程度上是未捕获的;创新映射技术的发展提供了理解这些树木的分布的机会,并应用空间显式模型,以探索树木的连接性的重要性。在这项研究中,我们展示了在调查树损和对连接的影响时模型的效用。具体而言,在更广泛的景观功能连通性上,我们调查了由于拆除路边树木,患病或损坏树木的共同管理反应而导致的树木损失的后果。我们模拟了英国东南六个焦点区域内的路边树木。我们使用了一个空间显式的基于个人的建模平台,范围,以模拟81个假设主动分散在这些农业碎片景观中的林地繁殖物种的运动。我们调查了从更广泛景观内的道路内拆除树木的程度,影响了任何一年中成功的分散者的总数以及通过时间越来越多的繁殖林地的数量。在平均路边树上占陆地覆盖的2%,但除以其中60%(〜1.2%的土地覆盖率),但成功的分散人数减少了高达17%。当路边树木代表更大比例的遮篷覆盖时,影响最大。因此,该研究表明,诸如Rangeshifer的模型可以提供有价值的工具,用于评估在林地外面的失去树木的后果。<

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