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Accommodating Dynamic Oceanographic Processes and Pelagic Biodiversity in Marine Conservation Planning

机译:在海洋保护规划中适应动态海洋过程和浮游生物多样性

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摘要

Pelagic ecosystems support a significant and vital component of the ocean's productivity and biodiversity. They are also heavily exploited and, as a result, are the focus of numerous spatial planning initiatives. Over the past decade, there has been increasing enthusiasm for protected areas as a tool for pelagic conservation, however, few have been implemented. Here we demonstrate an approach to plan protected areas that address the physical and biological dynamics typical of the pelagic realm. Specifically, we provide an example of an approach to planning protected areas that integrates pelagic and benthic conservation in the southern Benguela and Agulhas Bank ecosystems off South Africa. Our aim was to represent species of importance to fisheries and species of conservation concern within protected areas. In addition to representation, we ensured that protected areas were designed to consider pelagic dynamics, characterized from time-series data on key oceanographic processes, together with data on the abundance of small pelagic fishes. We found that, to have the highest likelihood of reaching conservation targets, protected area selection should be based on time-specific data rather than data averaged across time. More generally, we argue that innovative methods are needed to conserve ephemeral and dynamic pelagic biodiversity.
机译:中上层生态系统是海洋生产力和生物多样性的重要组成部分。它们也被大量利用,因此成为众多空间规划计划的重点。在过去的十年中,人们对保护区作为中上层保护的工具的热情不断提高,但实施起来却很少。在这里,我们演示了一种规划保护区的方法,以解决中上层带典型的物理和生物动力学问题。具体来说,我们提供了一个规划保护区方法的示例,该方法将本格拉南部和南非以外的Agulhas银行生态系统中的上层和底栖生物保护相结合。我们的目标是代表对渔业重要的物种和保护区内的保护物种。除代表性外,我们还确保保护区的设计考虑了远洋动力学,其特征在于关键海洋学过程的时间序列数据以及小中上鱼类的丰富数据。我们发现,为了最大可能地达到保护目标,保护区的选择应基于特定时间的数据,而不是跨时间平均的数据。更普遍地说,我们认为需要创新方法来保护短暂的和动态的中上层生物多样性。

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