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No Reef Is an Island: Integrating Coral Reef Connectivity Data into the Design of Regional-Scale Marine Protected Area Networks

机译:没有礁石就是孤岛:将珊瑚礁连通性数据整合到区域规模的海洋保护区网络的设计中

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摘要

We integrated coral reef connectivity data for the Caribbean and Gulf of Mexico into a conservation decision-making framework for designing a regional scale marine protected area (MPA) network that provides insight into ecological and political contexts. We used an ocean circulation model and regional coral reef data to simulate eight spawning events from 2008–2011, applying a maximum 30-day pelagic larval duration and 20% mortality rate. Coral larval dispersal patterns were analyzed between coral reefs across jurisdictional marine zones to identify spatial relationships between larval sources and destinations within countries and territories across the region. We applied our results in Marxan, a conservation planning software tool, to identify a regional coral reef MPA network design that meets conservation goals, minimizes underlying threats, and maintains coral reef connectivity. Our results suggest that approximately 77% of coral reefs identified as having a high regional connectivity value are not included in the existing MPA network. This research is unique because we quantify and report coral larval connectivity data by marine ecoregions and Exclusive Economic Zones (EZZ) and use this information to identify gaps in the current Caribbean-wide MPA network by integrating asymmetric connectivity information in Marxan to design a regional MPA network that includes important reef network connections. The identification of important reef connectivity metrics guides the selection of priority conservation areas and supports resilience at the whole system level into the future.
机译:我们将加勒比海地区和墨西哥湾的珊瑚礁连通性数据整合到一个保护决策框架中,以设计一个区域规模的海洋保护区(MPA)网络,从而提供对生态和政治环境的洞察力。我们使用海洋环流模型和区域珊瑚礁数据模拟了2008-2011年的八次产卵事件,应用了最长30天的上层幼体持续时间和20%的死亡率。分析了跨管辖海洋区域的珊瑚礁之间的珊瑚幼虫扩散模式,以确定该区域内国家和地区内幼虫来源与目的地之间的空间关系。我们在保护计划软件工具Marxan中应用了我们的结果,以识别符合保护目标,最大程度地减少潜在威胁并保持珊瑚礁连通性的区域珊瑚礁MPA网络设计。我们的结果表明,大约77%的被确定具有较高区域连通性价值的珊瑚礁未包含在现有的MPA网络中。这项研究是独特的,因为我们通过海洋生态区和专属经济区(EZZ)量化和报告了珊瑚幼虫的连通性数据,并使用此信息通过整合Marxan中的非对称连通性信息来设计当前的加勒比范围内的MPA网络中的差距,从而设计出区域性MPA包含重要礁石网络连接的网络。重要礁石连通性指标的确定可指导优先保护区的选择,并在整个系统级别支持未来的复原力。

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