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空间显式清除策略提高了入侵植物物种控制的效率。

Spatially explicit removal strategies increase the efficiency of invasive plant species control.

机构信息

Department of Geography, University of Zurich, Zurich, Switzerland.

URPP Global Change and Biodiversity, University of Zurich, Zurich, Switzerland.

出版信息

Ecol Appl. 2021 Apr;31(3):e02257. doi: 10.1002/eap.2257. Epub 2021 Jan 18.

Abstract

Effective management strategies are needed to control expansion of invasive alien plant species and attenuate economic and ecological impacts. While previous theoretical studies have assessed optimal control strategies that balance economic costs and ecological benefits, less attention has been paid to the ways in which the spatial characteristics of individual patches may mediate the effectiveness of management strategies. We developed a spatially explicit cellular automaton model for invasive species spread, and compared the effectiveness of seven control strategies. These control strategies used different criteria to prioritize the removal of invasive species patches from the landscape. The different criteria were related to patch size, patch geometry, and patch position within the landscape. Effectiveness of strategies was assessed for both seed dispersing and clonally expanding plant species. We found that, for seed-dispersing species, removal of small patches and removal of patches that are isolated within the landscape comprised relatively effective control strategies. For clonally expanding species, removal of patches based on their degree of isolation and their geometrical properties comprised relatively effective control strategies. Subsequently, we parameterized the model to mimic the observed spatial distribution of the invasive species Antigonon leptopus on St. Eustatius (northern Caribbean). This species expands clonally and also disperses via seeds, and model simulations showed that removal strategies focusing on smaller patches that are more isolated in the landscape would be most effective and could increase the effectiveness of a 10-yr control strategy by 30-90%, as compared to random removal of patches. Our study emphasizes the potential for invasive plant species management to utilize recent advances in remote sensing, which enable mapping of invasive species at the high spatial resolution needed to quantify patch geometries. The presented results highlight how this spatial information can be used in the design of more effective invasive species control strategies.

摘要

需要有效的管理策略来控制入侵外来植物物种的扩张,并减轻其对经济和生态的影响。虽然以前的理论研究已经评估了平衡经济成本和生态效益的最佳控制策略,但对于个体斑块的空间特征如何调节管理策略的有效性,关注较少。我们开发了一种用于入侵物种传播的空间显式元胞自动机模型,并比较了七种控制策略的有效性。这些控制策略使用不同的标准来优先从景观中去除入侵物种斑块。不同的标准与斑块大小、斑块几何形状和斑块在景观中的位置有关。我们评估了这些策略对种子传播和克隆扩张植物物种的有效性。我们发现,对于种子传播物种,去除小斑块和去除景观中孤立的斑块是相对有效的控制策略。对于克隆扩张物种,基于其隔离程度和几何特性去除斑块是相对有效的控制策略。随后,我们对模型进行了参数化,以模拟入侵物种 Antigonon leptopus 在圣尤斯特歇斯(加勒比北部)的观测到的空间分布。该物种通过克隆和种子传播进行扩张,模型模拟表明,针对景观中更孤立的较小斑块的去除策略将是最有效的,与随机去除斑块相比,可将 10 年控制策略的有效性提高 30-90%。我们的研究强调了入侵植物物种管理利用遥感的最新进展的潜力,这使得可以在量化斑块几何形状所需的高空间分辨率下对入侵物种进行绘图。所呈现的结果突出了如何利用这种空间信息来设计更有效的入侵物种控制策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e84/8047905/6706501b548f/EAP-31-e02257-g005.jpg

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