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A decision-support tool to facilitate discussion of no-take boundaries for Marine Protected Areas during stakeholder consultation processes

机译:决策支持工具,可在利益相关者咨询过程中促进讨论海洋保护区的禁区范围

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Marine Protected Areas (MPAs) are proposed to help conserve marine biodiversity and ecological integrity. There is much guidance on the optimal design of MPAs but once potential MPAs are identified there is little guidance on defining the final no-take boundaries. This is especially problematic in temperate zones where ecological boundaries are "fuzzy", which can be quite complicated during a consultation process involving the government and divergent stakeholder groups. More decision-support tools are needed to help stakeholders and government agencies objectively compare conservation and socio-economic trade-offs among proposed boundary options. To that end, we developed a method to identify which boundary minimizes spatial overlap of highly vulnerable species and a dominant stressor. We used the recently proposed boundary options of a candidate MPA in Atlantic Canada to illustrate our method. We evaluated the vulnerability of 23 key species to bottom trawling, the most prevalent stressor in the area. We then compared the spatial overlap of the most vulnerable species and the 2002-2011 footprint of bottom trawling among boundary options. The best boundary option was identified as that which minimized spatial overlap and total area. This approach identifies boundary options which provide the greatest protection of vulnerable species from their most significant stressor, at limited socio-economic cost. It is an objective decision-support tool to help stakeholders agree on final boundaries for MPAs. (C) 2014 Elsevier GmbH. All rights reserved.
机译:提议设立海洋保护区(MPA)以帮助保护海洋生物多样性和生态完整性。关于MPA的最佳设计有很多指导,但是一旦确定了潜在的MPA,则几乎没有关于定义最终禁区的指导。在温带地区,生态边界是“模糊的”,这尤其成问题,在涉及政府和利益相关者不同群体的磋商过程中,这可能会非常复杂。需要更多的决策支持工具来帮助利益相关者和政府机构客观地比较提议的边​​界方案之间的保护和社会经济权衡。为此,我们开发了一种方法来确定哪个边界使高度脆弱物种和显性应激源的空间重叠最小化。我们使用了加拿大大西洋省候选MPA的最新提议边界选项来说明我们的方法。我们评估了23种主要物种对底拖网的脆弱性,拖网是该地区最普遍的应激源。然后,我们比较了最脆弱物种的空间重叠和边界选择之间2002-2011年底拖网捕捞的足迹。最佳边界选项被确定为最小化空间重叠和总面积的边界选项。这种方法确定了边界方案,这些方案以有限的社会经济成本为脆弱物种提供了最大的保护,使其免受最大的压力。它是一种客观的决策支持工具,可帮助利益相关者就MPA的最终界限达成一致。 (C)2014 Elsevier GmbH。版权所有。

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