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级联生态影响:从富营养化的沿海泻湖崩溃到地中海海草床衰退

Cascading ecological impacts: from eutrophic coastal lagoon collapse to decline of Posidonia oceanica meadows in the Mediterranean.

作者信息

Jiménez-Casero J, Ruiz J M, Bernardeau-Esteller J, García-Muñoz R, Sánchez-Lizaso J L, Marín-Guirao L, Belando M D

机构信息

Dpto. de Ciencias del Mar y Biología Aplicada, Universidad de Alicante, Spain; Seagrass Ecology Group (GEAM), IEO, CSIC. Centro Oceanográfico de Murcia, C/Varadero, 30740, San Pedro del Pinatar, Región de Murcia, Spain.

Seagrass Ecology Group (GEAM), IEO, CSIC. Centro Oceanográfico de Murcia, C/Varadero, 30740, San Pedro del Pinatar, Región de Murcia, Spain.

出版信息

Mar Pollut Bull. 2025 Aug 8;221:118536. doi: 10.1016/j.marpolbul.2025.118536.

DOI:10.1016/j.marpolbul.2025.118536
PMID:40782591
Abstract

Environmental degradation in coastal lagoons can propagate across ecosystem boundaries, triggering cascading impacts due to their strong connectivity with adjacent marine habitats. Understanding these cross-system dynamics is essential for effective coastal management. We investigate whether the ecological collapse of the Mar Menor coastal lagoon, following the 2015 eutrophication crisis, extended its impacts to the adjacent Mediterranean Sea, affecting an extensive Posidonia oceanica meadow. We characterized the physicochemical properties of Mediterranean waters influenced by lagoon outflow and analysed seagrass structural and physiological parameters (shoot density, meadow cover, shoot size, and nitrogen content and isotopic signatures) across 29 sites with historical data from 2004 onward. GIS tools were used to evaluate the spatial extent of lagoon water influence. Hypersaline, nutrient-rich waters extended up to 1.8 km offshore, affecting tens of hectares of seagrass habitat, as evidenced by δN values. Plants in this area showed signs of chronic stress, including nitrogen accumulation and reduced shoot size, likely resulting from hypersalinity, nutrient loading, and persistent light limitation. Structural degradation was also apparent, with shoot density and cover markedly lower than pre-crisis conditions. Long-term monitoring (2012-2020) confirmed that these changes followed the lagoon collapse and the extreme turbidity and reduced light availability associated with massive algal blooms. Our findings underscore the cascading impacts of anthropogenic pressures on interconnected coastal ecosystems. Given the widespread occurrence of eutrophication in Mediterranean lagoons, integrated management strategies that accounts for ecosystem connectivity are urgently needed to prevent irreversible impacts on valuable and slow recovering ecosystems such as P. oceanica meadows.

摘要

沿海泻湖的环境退化会跨越生态系统边界扩散,因其与相邻海洋栖息地的紧密联系而引发连锁影响。了解这些跨系统动态对于有效的海岸管理至关重要。我们调查了2015年富营养化危机后,马尔·梅诺尔沿海泻湖的生态崩溃是否将其影响扩展到了相邻的地中海,从而影响了大片的波喜荡草草地。我们对受泻湖流出影响的地中海水体的物理化学性质进行了表征,并分析了29个地点的海草结构和生理参数(茎密度、草地覆盖度、茎大小以及氮含量和同位素特征),这些数据来自2004年以后的历史记录。利用地理信息系统工具评估了泻湖水影响的空间范围。高盐、富营养化的水体向近海延伸达1.8公里,影响了数十公顷的海草栖息地,δN值证明了这一点。该区域的植物表现出慢性应激的迹象,包括氮积累和茎大小减小,这可能是由于高盐度、营养负荷和持续的光照限制所致。结构退化也很明显,茎密度和覆盖度明显低于危机前的状况。长期监测(2012 - 2020年)证实,这些变化是随着泻湖崩溃以及与大规模藻华相关的极端浑浊度和光照可用性降低而发生的。我们的研究结果强调了人为压力对相互关联的沿海生态系统的连锁影响。鉴于地中海泻湖富营养化现象普遍存在,迫切需要考虑生态系统连通性的综合管理策略,以防止对诸如波喜荡草草地等有价值且恢复缓慢的生态系统产生不可逆转的影响。

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