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人类对地中海和黑海海洋生态系统的累积影响:评估当前的压力与机遇。

Cumulative human impacts on Mediterranean and Black Sea marine ecosystems: assessing current pressures and opportunities.

作者信息

Micheli Fiorenza, Halpern Benjamin S, Walbridge Shaun, Ciriaco Saul, Ferretti Francesco, Fraschetti Simonetta, Lewison Rebecca, Nykjaer Leo, Rosenberg Andrew A

机构信息

Hopkins Marine Station, Stanford University, Pacific Grove, California, United States of America.

出版信息

PLoS One. 2013 Dec 4;8(12):e79889. doi: 10.1371/journal.pone.0079889. eCollection 2013.

Abstract

Management of marine ecosystems requires spatial information on current impacts. In several marine regions, including the Mediterranean and Black Sea, legal mandates and agreements to implement ecosystem-based management and spatial plans provide new opportunities to balance uses and protection of marine ecosystems. Analyses of the intensity and distribution of cumulative impacts of human activities directly connected to the ecological goals of these policy efforts are critically needed. Quantification and mapping of the cumulative impact of 22 drivers to 17 marine ecosystems reveals that 20% of the entire basin and 60-99% of the territorial waters of EU member states are heavily impacted, with high human impact occurring in all ecoregions and territorial waters. Less than 1% of these regions are relatively unaffected. This high impact results from multiple drivers, rather than one individual use or stressor, with climatic drivers (increasing temperature and UV, and acidification), demersal fishing, ship traffic, and, in coastal areas, pollution from land accounting for a majority of cumulative impacts. These results show that coordinated management of key areas and activities could significantly improve the condition of these marine ecosystems.

摘要

海洋生态系统的管理需要有关当前影响的空间信息。在包括地中海和黑海在内的几个海洋区域,实施基于生态系统的管理和空间规划的法律授权与协议为平衡海洋生态系统的利用和保护提供了新机遇。迫切需要对与这些政策努力的生态目标直接相关的人类活动累积影响的强度和分布进行分析。对22种驱动因素对17个海洋生态系统的累积影响进行量化和绘图显示,整个流域的20%以及欧盟成员国领海的60%-99%受到严重影响,在所有生态区域和领海都存在很高的人类影响。这些区域中不到1%受影响相对较小。这种高影响是由多种驱动因素造成的,而非单一的某种用途或压力源,气候驱动因素(气温升高、紫外线增强和酸化)、底栖渔业、船舶交通以及沿海地区来自陆地的污染占累积影响的大部分。这些结果表明,对关键区域和活动进行协调管理能够显著改善这些海洋生态系统的状况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c63a/3850916/daafd490afa6/pone.0079889.g001.jpg

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