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A modeling framework for the establishment and spread of invasive species in heterogeneous environments

机译:在异质环境中建立和传播入侵物种的建模框架

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摘要

Natural and human‐induced events are continuously altering the structure of our landscapes and as a result impacting the spatial relationships between individual landscape elements and the species living in the area. Yet, only recently has the influence of the surrounding landscape on invasive species spread started to be considered. The scientific community increasingly recognizes the need for broader modeling framework that focuses on cross‐study comparisons at different spatiotemporal scales. Using two illustrative examples, we introduce a general modeling framework that allows for a systematic investigation of the effect of habitat change on invasive species establishment and spread. The essential parts of the framework are (i) a mechanistic spatially explicit model (a modular dispersal framework—MDIG) that allows population dynamics and dispersal to be modeled in a geographical information system (GIS), (ii) a landscape generator that allows replicated landscape patterns with partially controllable spatial properties to be generated, and (iii) landscape metrics that depict the essential aspects of landscape with which dispersal and demographic processes interact. The modeling framework provides functionality for a wide variety of applications ranging from predictions of the spatiotemporal spread of real species and comparison of potential management strategies, to theoretical investigation of the effect of habitat change on population dynamics. Such a framework allows to quantify how small‐grain landscape characteristics, such as habitat size and habitat connectivity, interact with life‐history traits to determine the dynamics of invasive species spread in fragmented landscape. As such, it will give deeper insights into species traits and landscape features that lead to establishment and spread success and may be key to preventing new incursions and the development of efficient monitoring, surveillance, control or eradication programs.
机译:自然和人为事件不断改变着我们的景观结构,从而影响了单个景观元素与该地区物种之间的空间关系。然而,直到最近才开始考虑周围景观对入侵物种传播的影响。科学界越来越认识到需要更广泛的建模框架,该框架应侧重于不同时空尺度的跨研究比较。使用两个说明性示例,我们介绍了一个通用的建模框架,该框架允许对生境变化对入侵物种建立和传播的影响进行系统研究。该框架的主要部分是(i)允许在地理信息系统(GIS)中建模人口动态和分散的机械空间显式模型(模块化分散框架-MDIG),(ii)允许复制的景观生成器具有部分可控的空间特性的景观格局,以及(iii)描绘分散和人口统计过程相互作用的景观基本方面的景观度量。建模框架为从真实物种的时空传播的预测和潜在管理策略的比较到栖息地变化对种群动态影响的理论研究等各种应用提供了功能。这种框架可以量化小粒度景观特征(例如栖息地大小和栖息地连通性)如何与生命历史特征相互作用,从而确定在分散的景观中传播的入侵物种的动态。这样,它将对导致建立和传播成功的物种特征和景观特征提供更深入的见解,并且对于防止新的入侵和发展有效的监测,监视,控制或根除计划可能是关键。

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