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Incorporating larval dispersal into MPA design for both conservation and fisheries

机译:将幼虫扩散纳入保护和渔业的MPA设计中

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摘要

Larval dispersal by ocean currents is a critical component of systematic marine protected area (MPA) design. However, there is a lack of quantitative methods to incorporate larval dispersal in support of increasingly diverse management objectives, including local population persistence under multiple types of threats (primarily focused on larval retention within and dispersal between protected locations) and benefits to unprotected populations and fisheries (primarily focused on larval export from protected locations to fishing grounds). Here, we present a flexible MPA design approach that can reconcile multiple such potentially conflicting management objectives by balancing various associated treatments of larval dispersal information. We demonstrate our approach based on alternative dispersal patterns, combinations of threats to populations, management objectives, and two different optimization strategies (site vs. network-based). Our outcomes highlight a consistently high effectiveness in selecting priority locations that are self-replenishing, inter-connected, and/or important larval sources. We find that the opportunity to balance these three dispersal attributes flexibly can help not only to prevent meta-population collapse, but also to ensure effective fisheries recovery, with average increases in the number of recruits at fishing grounds at least two times higher than achieved by standard habitat-based or ad-hoc MPA designs. Future applications of our MPA design approach should therefore be encouraged, specifically where management tools other than MPAs are not feasible.
机译:洋流引起的幼虫扩散是系统性海洋保护区(MPA)设计的关键组成部分。但是,缺乏量化的方法来纳入幼体扩散以支持日益多样化的管理目标,包括在多种威胁下当地居民的持久性(主要集中在保护区内的幼体滞留和在受保护地区之间的扩散)以及对未受保护的种群和渔业的惠益。 (主要侧重于从保护区到渔场的幼体出口)。在这里,我们提出了一种灵活的MPA设计方法,该方法可以通过平衡对幼虫传播信息的各种相关处理来调和多个此类潜在冲突的管理目标。我们基于替代的分散模式,对人口的威胁,管理目标以及两种不同的优化策略(基于站点与基于网络)的组合来证明我们的方法。我们的结果突出表明,在选择可自我补充,相互联系和/或重要的幼虫来源的优先位置时,始终如一的高效性。我们发现,灵活地平衡这三个分散属性的机会不仅可以帮助防止种群过多的崩溃,而且可以确保有效的渔业恢复,渔场新兵人数的平均增长至少是实现这一目标的两倍。基于栖息地的标准MPA设计或临时MPA设计。因此,应鼓励我们的MPA设计方法的未来应用,特别是在MPA以外的其他管理工具不可行的地方。

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