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Solutions for ecosystem-level protection of ocean systems under climate change

机译:气候变化下海洋系统生态系统级保护的解决方案

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摘要

The Paris Conference of Parties (COP21) agreement renewed momentum for action against climate change, creating the space for solutions for conservation of the ocean addressing two of its largest threats: climate change and ocean acidification (CCOA). Recent arguments that ocean policies disregard a mature conservation research field and that protected areas cannot address climate change may be oversimplistic at this time when dynamic solutions for the management of changing oceans are needed. We propose a novel approach, based on spatial meta-analysis of climate impact models, to improve the positioning of marine protected areas to limit CCOA impacts. We do this by estimating the vulnerability of ocean ecosystems to CCOA in a spatially explicit manner and then co-mapping human activities such as the placement of renewable energy developments and the distribution of marine protected areas. We test this approach in the NE Atlantic considering also how CCOA impacts the base of the food web which supports protected species, an aspect often neglected in conservation studies. We found that, in this case, current regional conservation plans protect areas with low ecosystem-level vulnerability to CCOA, but disregard how species may redistribute to new, suitable and productive habitats. Under current plans, these areas remain open to commercial extraction and other uses. Here, and worldwide, ocean conservation strategies under CCOA must recognize the long-term importance of these habitat refuges, and studies such as this one are needed to identify them. Protecting these areas creates adaptive, climate-ready and ecosystem-level policy options for conservation, suitable for changing oceans.
机译:巴黎缔约方会议(COP21)协议为应对气候变化采取了新的动力,为应对其最大的两个威胁的海洋保护解决方案创造了空间:气候变化和海洋酸化(CCOA)。当需要动态管理海洋变化的解决方案时,最近的论点是海洋政策无视成熟的保护研究领域,保护区无法应对气候变化,这一论点可能过于简单。我们基于气候影响模型的空间元分析,提出一种新颖的方法,以改善海洋保护区的位置,以限制CCOA的影响。为此,我们以空间明确的方式估计海洋生态系统对CCOA的脆弱性,然后共同映射人类活动,例如放置可再生能源的发展和海洋保护区的分布。我们还考虑了CCOA如何影响支持受保护物种的食物网基础,在大西洋东北部对该方法进行了测试,这在保护研究中经常被忽略。我们发现,在这种情况下,当前的区域保护计划保护的生态系统对CCOA的脆弱性较低的地区,但是却忽略了物种如何重新分布到新的,合适的和生产性的栖息地。根据目前的计划,这些地区仍可用于商业开采和其他用途。在此乃至全球范围内,CCOA下的海洋保护策略必须认识到这些栖息地避难所的长期重要性,因此需要进行此类研究以识别它们。保护这些地区创造了适应性强,适应气候变化和生态系统一级的政策选择,以适应海洋变化。

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