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设计兼顾保护和渔业管理的海洋保护区网络。

Designing marine reserve networks for both conservation and fisheries management.

机构信息

Bren School of Environmental Science and Management, University of California, Santa Barbara, CA 93106, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Oct 26;107(43):18286-93. doi: 10.1073/pnas.0906473107. Epub 2010 Mar 3.

Abstract

Marine protected areas (MPAs) that exclude fishing have been shown repeatedly to enhance the abundance, size, and diversity of species. These benefits, however, mean little to most marine species, because individual protected areas typically are small. To meet the larger-scale conservation challenges facing ocean ecosystems, several nations are expanding the benefits of individual protected areas by building networks of protected areas. Doing so successfully requires a detailed understanding of the ecological and physical characteristics of ocean ecosystems and the responses of humans to spatial closures. There has been enormous scientific interest in these topics, and frameworks for the design of MPA networks for meeting conservation and fishery management goals are emerging. Persistent in the literature is the perception of an inherent tradeoff between achieving conservation and fishery goals. Through a synthetic analysis across these conservation and bioeconomic studies, we construct guidelines for MPA network design that reduce or eliminate this tradeoff. We present size, spacing, location, and configuration guidelines for designing networks that simultaneously can enhance biological conservation and reduce fishery costs or even increase fishery yields and profits. Indeed, in some settings, a well-designed MPA network is critical to the optimal harvest strategy. When reserves benefit fisheries, the optimal area in reserves is moderately large (mode ≈30%). Assessing network design principals is limited currently by the absence of empirical data from large-scale networks. Emerging networks will soon rectify this constraint.

摘要

海洋保护区(MPAs)禁止捕捞已被反复证明可以增加物种的数量、大小和多样性。然而,这些好处对大多数海洋物种来说意义不大,因为单个保护区通常很小。为了应对海洋生态系统面临的更大规模的保护挑战,一些国家正在通过建立保护区网络来扩大单个保护区的效益。要成功做到这一点,需要详细了解海洋生态系统的生态和物理特征,以及人类对空间封闭的反应。这些主题引起了巨大的科学兴趣,用于满足保护和渔业管理目标的 MPA 网络设计框架正在出现。在文献中,一直存在着实现保护和渔业目标之间固有权衡的看法。通过对这些保护和生物经济研究进行综合分析,我们构建了减少或消除这种权衡的 MPA 网络设计指南。我们提出了用于设计网络的大小、间距、位置和配置指南,这些网络可以同时增强生物保护,降低渔业成本,甚至增加渔业产量和利润。事实上,在某些情况下,精心设计的 MPA 网络对于最佳收获策略至关重要。当保护区对渔业有益时,保护区内的最佳面积适中(模式≈30%)。目前,评估网络设计原则受到缺乏大规模网络的经验数据的限制。新兴网络将很快纠正这一限制。

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