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Evaluating conservation and fisheries management strategies by linking spatial prioritization software and ecosystem and fisheries modelling tools

机译:通过将空间优先级软件与生态系统和渔业建模工具联系起来,评估保护和渔业管理战略

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摘要

Well-designed marine protected area (MPA) networks can deliver a range of ecological, economic and social benefits, and so a great deal of research has focused on developing spatial conservation prioritization tools to help identify important areas. However, whilst these software tools are designed to identify MPA networks that both represent biodiversity and minimize impacts on stakeholders, they do not consider complex ecological processes. Thus, it is difficult to determine the impacts that proposed MPAs could have on marine ecosystem health, fisheries and fisheries sustainability. Using the eastern English Channel as a case study, this paper explores an approach to address these issues by identifying a series of MPA networks using the Marxan and Marxan with Zones conservation planning software and linking them with a spatially explicit ecosystem model developed in Ecopath with Ecosim. We then use these to investigate potential trade-offs associated with adopting different MPA management strategies. Limited-take MPAs, which restrict the use of some fishing gears, could have positive benefits for conservation and fisheries in the eastern English Channel, even though they generally receive far less attention in research on MPA network design. Our findings, however, also clearly indicate that no-take MPAs should form an integral component of proposed MPA networks in the eastern English Channel, as they not only result in substantial increases in ecosystem biomass, fisheries catches and the biomass of commercially valuable target species, but are fundamental to maintaining the sustainability of the fisheries. Synthesis and applications. Using the existing software tools Marxan with Zones and Ecopath with Ecosim in combination provides a powerful policy-screening approach. This could help inform marine spatial planning by identifying potential conflicts and by designing new regulations that better balance conservation objectives and stakeholder interests. In addition, it highlights that appropriate combinations of no-take and limited-take marine protected areas might be the most effective when making trade-offs between long-term ecological benefits and short-term political acceptability.
机译:精心设计的海洋保护区(MPA)网络可以带来一系列的生态,经济和社会效益,因此,大量研究集中在开发空间保护优先排序工具以帮助识别重要区域。但是,尽管这些软件工具旨在识别既代表生物多样性又将对利益相关者的影响降至最低的MPA网络,但它们并未考虑复杂的生态过程。因此,很难确定拟议的海洋保护区可能对海洋生态系统健康,渔业和渔业可持续性产生的影响。本文以东部英吉利海峡为例,探索了一种方法来解决这些问题,方法是使用Marxan和Marxan with Zones保护计划软件确定一系列MPA网络,并将它们与Ecopath和Ecosim开发的空间明确的生态系统模型相链接。然后,我们使用这些数据来研究与采用不同MPA管理策略相关的潜在权衡。限制使用某些渔具的限量捕捞MPA可能对东部英吉利海峡的养护和渔业产生积极的好处,尽管它们在MPA网络设计研究中通常没有受到太多关注。但是,我们的发现也清楚地表明,不摄取MPA应该构成东部英吉利海峡拟议MPA网络的组成部分,因为它们不仅会导致生态系统生物量,渔业产量和商业上有价值的目标物种的生物量大幅增加。 ,但对于维持渔业的可持续性至关重要。综合与应用。结合使用带区域的Marxan和带Ecosim的Ecopath,可以提供强大的策略筛选方法。这可以通过识别潜在冲突并设计新的法规来更好地平衡保护目标和利益相关者的利益,从而有助于海洋空间规划。此外,它强调了在长期生态惠益与短期政治可接受性之间进行权衡时,禁渔区和禁渔区海洋保护区的适当组合可能是最有效的。

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