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Spatial spread of an alien tree species in a heterogeneous forest landscape: a spatially realistic simulation model

机译:外来树种在异质森林景观中的空间扩散:空间逼真的模拟模型

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The effect of environmental heterogeneity on spatial spread of invasive species has received little attention in the literature. Altering landscape heterogeneity may be a suitable strategy to control invaders in man-made landscapes. We use a population-based, spatially realistic matrix model to explore mechanisms underlying the observed invasion patterns of an alien tree species, Prunus serotina Ehrh., in a heterogeneous managed forest. By altering several parameters in the simulation, we test for various hypotheses regarding the role of several mechanisms on invasion dynamics, including spatial heterogeneity, seed dispersers, site of first introduction, large-scale natural disturbances, and forest management. We observe that landscape heterogeneity makes the invasion highly directional resulting from two mechanisms: (1) irregular jumps, which occur rarely via long-distance dispersers and create new founder populations in distant suitable areas, and (2) regular, continuous diffusion toward adjacent cells via short- and mid-distance vectors. At the landscape scale, spatial heterogeneity increases the invasion speed but decreases the final invasion extent. Hence, natural disturbances (such as severe storms) appear to facilitate invasion spread, while forest management can have contrasting effects such as decreasing invasibility at the stand scale by increasing the proportion of light interception at the canopy level. The site of initial introduction influences the invasion process but without altering the final outcome. Our model represents the real landscape and incorporates the range of dispersal modes, making it a powerful tool to explore the interactions between environmental heterogeneity and invasion dynamics, as well as for managing plant invaders.
机译:环境异质性对入侵物种空间扩散的影响在文献中鲜为关注。改变景观异质性可能是控制人造景观中入侵者的合适策略。我们使用基于种群的空间现实矩阵模型来探索在异质管理森林中观察到的外来树种李子(Prunus serotina Ehrh。)入侵模式的机制。通过更改模拟中的几个参数,我们测试了关于几种机制对入侵动力学的作用的各种假设,包括空间异质性,种子分散器,首次引入的地点,大规模自然干扰和森林经营。我们观察到景观异质性使入侵具有高度定向性,这是由以下两种机制引起的:(1)不规则跳跃,这种跳跃很少通过长距离分散器发生,并在遥远的合适区域内创建了新的始祖种群;(2)规则,连续地向相邻单元扩散通过短距离和中距离向量。在景观尺度上,空间异质性提高了入侵速度,但降低了最终入侵程度。因此,自然干扰(例如强风暴)似乎促进了入侵扩散,而森林管理则具有相反的效果,例如通过增加冠层水平的光截留比例来减少林分规模的可入侵性。最初引入的地点会影响入侵过程,但不会改变最终结果。我们的模型代表了真实的景观,并纳入了分散模式的范围,使其成为探讨环境异质性与入侵动态之间相互作用以及管理植物入侵者的有力工具。

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