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首页> 外文期刊>Landscape Ecology >Targeting and evaluating biodiversity conservation action within fragmented landscapes: an approach based on generic focal species and least-cost networks
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Targeting and evaluating biodiversity conservation action within fragmented landscapes: an approach based on generic focal species and least-cost networks

机译:针对和评估零散景观中的生物多样性保护行动:一种基于通用重点物种和成本最低的网络的方法

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摘要

The focus of biodiversity conservation is shifting to larger spatial scales in response to habitat fragmentation and the need to integrate multiple landscape objectives. Conservation strategies increasingly incorporate measures to combat fragmentation such as ecological networks. These are often based on assessment of landscape structure but such approaches fail to capitalise on the potential offered by more ecologically robust assessments of landscape function and connectivity. In this paper, we describe a modelling approach to identifying functional habitat networks and demonstrate its application to a fragmented landscape where policy initiatives seek to improve conditions for woodland biodiversity including increasing woodland cover. Functional habitat networks were defined by identifying suitable habitat and by modelling connectivity using least-cost approaches to account for matrix permeability. Generic focal species (GFS) profiles were developed, in consultation with stakeholders, to represent species with high and moderate sensitivity to fragmentation. We demonstrated how this form of analysis can be used to aid the spatial targeting of conservation actions. This ‘targeted’ action scenario was tested for effectiveness against comparable scenarios, which were based on random and clumped actions within the same landscape. We tested effectiveness using structural metrics, network-based metrics and a published functional connectivity indicator. Targeting actions within networks resulted in the highest mean woodland area and highest connectivity indicator value. Our approach provides an assessment of landscape function by recognising the importance of the landscape matrix. It provides a framework for the targeting and evaluation of alternative conservation options, offering a pragmatic, ecologically-robust solution to a current need in applied landscape ecology.
机译:由于生境破碎化和整合多个景观目标的需要,生物多样性保护的重点正在转移到更大的空间尺度。保护战略越来越多地采用诸如生态网络之类的措施来应对碎片化。这些方法通常基于景观结构的评估,但这种方法无法利用景观功能和连通性的更生态可靠的评估所提供的潜力。在本文中,我们描述了一种用于识别功能性栖息地网络的建模方法,并展示了其在零散景观中的应用,在该景观中,政策举措旨在改善林地生物多样性的条件,包括增加林地覆盖率。通过确定合适的栖息地并使用成本最低的方法对连通性进行建模以说明基质的渗透性,来定义功能性栖息地网络。经与利益相关者协商,制定了通用重点物种(GFS)概况,以代表对碎片高度敏感的物种。我们演示了如何使用这种形式的分析来辅助保护行动的空间定位。此“目标”行动场景已针对可比场景进行了有效性测试,这些可比场景是基于同一场景中的随机和成簇行为。我们使用结构指标,基于网络的指标和已发布的功能连接性指标测试了有效性。网络内的针对性行动导致最高的林地平均面积和最高的连通性指标值。我们的方法通过识别景观矩阵的重要性来提供景观功能的评估。它提供了针对性和评估替代性保护方案的框架,为当前应用景观生态学的需求提供了务实的,生态稳健的解决方案。

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