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Developing a functional connectivity indicator to detect change in fragmented landscapes

机译:开发功能连接性指标以检测零散景观的变化

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摘要

Biodiversity indicators are increasingly used to assess progress towards conservation targets. Particular indicators are required to assess the impacts of habitat fragmentation on landscape connectivity and biodiversity value. This paper recognises that connectivity is best defined by the interaction between species and the landscape in which they occur, and proposes a functional approach to assess connectivity. The approach utilises an incidence function model (IFM) as a spatially explicit method to assess potential species-level connectivity. The standard IFM connectivity measure is modified to account for the influence of the surrounding landscape matrix on edge impacts (through a weighted internal edge buffer) and ecological isolation (through an assessment of least-cost distance to account for landscape permeability). It has been recognised that such patch-based connectivity measures can provide misleading results when used to examine change, as they only focus on between patch movements. As a result, a modified hybrid IFM, based on a combination of patch and cell-based approaches, is developed to account for both within (intra) and between (inter) patch connectivity. The resulting probability of functional connectivity (PFC) indicator was evaluated, alongside a patch-based connectivity measure, through the application to four model landscapes based on changes (2 negative and 2 positive) to a control landscape. The four model landscapes illustrate the impact of landscape change on habitat area, edge impacts and matrix permeability. The proposed PFC indicator successfully discriminated between the two negative and the two positive changes to the control landscape, whereas, the patch-based connectivity measure detected change successfully within three of the four landscapes. The PFC indicator predicted a decrease in intra and inter-patch connectivity following habitat loss and fragmentation (negative change 1), whereas patch-based connectivity measures indicate an increase in connectivity between fragmented patches. The proposed PFC indicator offers the opportunity to take the necessary species-based perspective to examine functional connectivity, incorporating habitat preference, dispersal probability, edge impacts and ecological isolation/permeability. The urgency to assess changes in connectivity and support conservation policy means that there is little time to wait for more complete data. We believe the proposed approach provides a robust balance between the data required and the biologically meaningful indicator produced.
机译:生物多样性指标越来越多地用于评估实现保护目标的进展。需要特殊指标来评估生境破碎化对景观连通性和生物多样性价值的影响。本文认识到连通性最好由物种与它们所处的景观之间的相互作用来定义,并提出了一种评估连通性的功能方法。该方法利用入射函数模型(IFM)作为空间显式方法来评估潜在物种级别的连通性。修改了标准IFM连接性度量,以考虑到周围景观矩阵对边缘影响的影响(通过加权内部边缘缓冲区)和生态隔离(通过评估成本最小距离来考虑景观渗透性)。已经认识到,这种基于补丁的连接性度量在检查更改时可能会产生误导性的结果,因为它们仅关注补丁移动之间。结果,开发了基于补丁和基于单元的方法的组合的改进的混合IFM,以解决补丁内部(内部)和之间(内部)之间的连接问题。通过基于对控制格局的更改(2个负向和2个正面)应用到四个模型格局,评估了功能连通性(PFC)指标的结果以及基于补丁的连通性度量。这四个模型景观说明了景观变化对栖息地面积,边缘影响和基质渗透性的影响。拟议的PFC指标成功地区分了控制格局的两个消极变化和两个积极变化,而基于补丁的连接性度量成功检测到四个格局中三个的变化。 PFC指标预测,栖息地丧失和破碎后,斑块内和斑块间的连通性会下降(负变化1),而基于斑块的连通性指标表明,零散的斑块之间的连通性会增加。拟议的PFC指标提供了机会,以必要的基于物种的观点来检查功能连通性,包括栖息地偏好,扩散概率,边缘影响和生态隔离/渗透性。评估连通性变化和支持保护政策的紧迫性意味着没有时间等待更完整的数据。我们认为,提出的方法可在所需数据与产生的生物学意义指标之间提供一个稳健的平衡。

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