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Combining habitat suitability models and spatial graphs for more effective landscape conservation planning: An applied methodological framework and a species case study

机译:结合栖息地适应性模型和空间图,以更有效地进行景观保护规划:应用方法框架和物种案例研究

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In response to the negative effects of habitat fragmentation on biodiversity, habitat network conservation and restoration has become a central objective in conservation planning. Evaluating landscape functional connectivity and mapping habitat networks are key steps for implementing effective actions, but both remain challenging. Habitat suitability models (HSM) and spatial graphs provide conservation managers with useful information for landscape planning. To tackle their respective drawbacks, we proposed to combine HSM and spatial graphs in a four-step methodological framework: (i) collect and prepare input data; (ii) model habitat suitability using MaxEnt to map the species' habitat suitability index (HSI); (iii) transform the HSI map into spatial graph inputs using GIS; and, (iv) perform spatial graph connectivity analysis using Graphab. The outputs of this species-specific and quantitative approach were maps of the species' habitat network. Habitat patches and dispersal linkages were ranked according to their importance for overall habitat availability and landscape connectivity. This prioritization identified locations where conservation biologists and landscape planners should focus conservation and restoration efforts. This framework is illustrated here with a case study on the woodlark (Lullula arborea) - a bird species - in a French Mediterranean area, and the method's limitations and alternatives are discussed. The quantitative-based graphical outputs of the framework can valuably support decision-making for landscape planning, complement local expert opinion, and encourage appropriate stake-holders to cooperate at regional scale.
机译:为了应对栖息地破碎化对生物多样性的负面影响,栖息地网络的保护和恢复已成为保护规划的中心目标。评估景观功能的连通性和绘制栖息地网络图是实施有效行动的关键步骤,但两者仍然具有挑战性。栖息地适应性模型(HSM)和空间图可为保护区管理者提供有关景观规划的有用信息。为了解决它们各自的缺点,我们建议在一个四步骤的方法框架中结合HSM和空间图:(i)收集并准备输入数据; (ii)使用MaxEnt对栖息地的适宜性进行建模,以绘制该物种的栖息地适宜性指数(HSI); (iii)使用GIS将HSI地图转换成空间图输入; (iv)使用Graphab执行空间图连接性分析。这种特定于物种的定量方法的输出是该物种栖息地网络的地图。根据栖息地斑块和分散联系对总体生境可用性和景观连通性的重要性进行排名。此优先级确定了保护生物学家和景观规划师应将重点放在保护和恢复工作上的位置。本文以法国地中海地区的一种木雀(Lullula arborea)(一种鸟类)为例,说明了该框架,并讨论了该方法的局限性和替代方法。该框架基于量化的图形输出可以有效地支持景观规划的决策,补充当地专家的意见,并鼓励适当的利益相关方在区域规模上进行合作。

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