Connecting the dots: Applying multispecies connectivity in marine park network planning

IF 4.4 1区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION Biological Conservation Pub Date : 2024-08-23 DOI:10.1016/j.biocon.2024.110759
Katie Gates , Jonathan Sandoval-Castillo , Andrea Barceló , Andrea Bertram , Eleanor A.L. Pratt , Peter R. Teske , Luciana Möller , Luciano B. Beheregaray
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Abstract

Marine ecosystems are highly dynamic, and their connectivity is affected by a complex range of biological, spatial, and oceanographic factors. Incorporating connectivity as a factor in the planning and management of marine protected areas (MPAs) is important yet challenging. Here, we implemented a novel integrative framework that uses intraspecific genetic and genomic data for multiple marine species to characterise connectivity across a recently established South Australian MPA network. We generated connectivity networks, estimated cross-species concordance of connectivity patterns, and tested the impact of key spatial and oceanographic factors on each species. Connectivity patterns varied markedly among species, but were most correlated among those with similar dispersal strategies. Ordination analyses revealed significant associations with both waterway distances and oceanographic advection models. Notably, waterway distances provided better predictive power in all-species combined analyses. We extended the practical relevance of our findings by employing spatial prioritisation with Marxan, using node values derived from both genetic and geographic connectivity networks. This allowed the identification of several priority areas for conservation, and substantiated the initial decision to employ spatial distance as a proxy for biological connectivity for the design of the South Australian marine park network. Our study establishes a baseline for connectivity monitoring in South Australian MPAs, and provides guidelines for adapting this framework to protected networks elsewhere in the world.

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连接点:在海洋公园网络规划中应用多物种连通性
海洋生态系统是高度动态的,其连通性受到一系列复杂的生物、空间和海洋学因素的影响。将连通性作为一个因素纳入海洋保护区(MPA)的规划和管理非常重要,但也极具挑战性。在这里,我们采用了一个新颖的综合框架,利用多个海洋物种的种内遗传和基因组数据来描述最近建立的南澳大利亚 MPA 网络的连通性特征。我们生成了连通性网络,估算了连通性模式的跨物种一致性,并测试了关键空间和海洋学因素对每个物种的影响。不同物种之间的连通性模式差异明显,但具有相似扩散策略的物种之间的相关性最高。排序分析表明,水道距离和海洋平流模型都与物种的连通性密切相关。值得注意的是,在所有物种的综合分析中,水道距离具有更好的预测能力。我们利用从遗传和地理连通性网络中得出的节点值,通过使用 Marxan 进行空间优先排序,扩大了我们研究结果的实际意义。这样就确定了几个优先保护区域,并证实了在设计南澳大利亚海洋公园网络时采用空间距离作为生物连通性替代物的最初决定。我们的研究为南澳大利亚海洋保护区的连通性监测确立了基线,并为将这一框架应用于世界其他地方的保护网络提供了指导。
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来源期刊
Biological Conservation
Biological Conservation 环境科学-环境科学
CiteScore
10.20
自引率
3.40%
发文量
295
审稿时长
61 days
期刊介绍: Biological Conservation is an international leading journal in the discipline of conservation biology. The journal publishes articles spanning a diverse range of fields that contribute to the biological, sociological, and economic dimensions of conservation and natural resource management. The primary aim of Biological Conservation is the publication of high-quality papers that advance the science and practice of conservation, or which demonstrate the application of conservation principles for natural resource management and policy. Therefore it will be of interest to a broad international readership.
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