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Applying systematic conservation planning to improve the allocation of restoration actions at multiple spatial scales

机译:应用系统保护计划改善多个空间尺度的恢复行为分配

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Ecological restoration is increasingly being upscaled to larger spatial scales of tens to hundreds of kilometers. Yet the complex logistics and high costs of ecological restoration mean that actions must be placed strategically at local scales of tens of meters to maximize ecological benefits and reduce socioeconomic costs. Despite the purported use of systematic planning tools for allocating restoration effort, the uptake and implementation of data-driven restoration planning and ecological goal setting remains poor in many restoration programs. Here we demonstrate how the sequential workflows of systematic conservation planning can be translated to restoration at two spatial scales to enhance estuarine fisheries in eastern Australia. We select estuaries where restoration is feasible and recommended based on quantitative regional ecological goals (i.e. regional-scale prioritization), and then identify potential restoration sites at smaller spatial scales within estuaries based on the principles of spatial ecology to ensure that the success and benefits of restoration are maximized (i.e. local-scale prioritization). At the regional scale, we identified four levels of restoration priorities (very high, high, intermediate, and low) using quantitative ecological goals and the current ecological understanding of each system. At the local scale, we used spatially explicit Bayesian belief networks to identify sites that maximize restoration outcomes based on the environmental niche of habitat-forming species and the spatial configuration of habitats that maximizes their use by fish. We show that using systematic frameworks can become an essential tool to optimize restoration investments at multiple scales as efforts upscale globally.
机译:生态恢复越来越升高到数百公里的较大空间尺度。然而,复杂的物流和生态恢复的高成本意味着必须在几十米的地方战略地策略性地放置,以最大限度地提高生态效益并降低社会经济成本。尽管据称使用系统规划工具来分配恢复努力,但数据驱动恢复规划和生态目标设置的吸收和实施仍然差,在许多恢复计划中仍然差。在这里,我们展示了系统保护规划的顺序工作流程可以转化为两种空间尺度的恢复,以增强澳大利亚东部的河口渔业。我们选择河口的河口是可行的,并根据定量区域生态目标(即区域规模优先级),然后根据空间生态学原则识别河口较小的空间尺度下的潜在恢复部位,以确保成功和效益恢复最大化(即本地尺度优先级)。在区域规模,我们使用定量生态目标和对每个系统的当前生态理解确定了四个恢复优先级(非常高,高,中级和低)。在本地规模,我们使用空间明确的贝叶斯信念网络来识别基于栖息地形成物种的环境利基以及最大化鱼类使用的栖息地的空间配置来最大化恢复结果的遗址。我们表明,使用系统框架可以成为优化多个尺度的恢复投资的重要工具,因为全球努力高档。

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