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在美国楠塔基特岛,大叶藻(Zostera marina L.)种群受到高海表温度和水质受损的威胁。

Eelgrass (Zostera marina L.) populations are threatened by high sea-surface temperatures and impaired waters on Nantucket Island, USA.

作者信息

Novak A B, Plaisted H K, Hughes Z J, Mittermayr A, Molden E

机构信息

Boston University, Earth and Environment, Boston, MA, United States of America.

US National Park Service, Northeast Coastal and Barrier Network, Wellfleet, MA, United States of America.

出版信息

Mar Pollut Bull. 2023 Dec;197:115689. doi: 10.1016/j.marpolbul.2023.115689. Epub 2023 Nov 9.

Abstract

Eelgrass (Zostera marina L.) is a key foundation species that provides multiple ecosystem services to shallow coastal and estuarine systems in the Northern Hemisphere. It is estimated that, over the last century, up to 50 % of all Z. marina habitat has been lost along the east coast of the USA due to factors including light reduction, eutrophication, and physical disturbance. Warming sea surface temperatures are also believed to be exacerbating losses and the future of this ecosystem is unclear. Here, we assess Z. marina meadows on Nantucket, an island system located 50 km off-shore of Massachusetts, by using common indicators of seagrass plant health and environmental quality. Our results show that Z. marina meadows on Nantucket Island are thermally stressed and light-limited during parts of their peak growing season. This suggests that sea-surface temperatures are a pivotal factor, along with cultural eutrophication, in observed large-scale losses of Z. marina and that further degradation could be expected in the future as the climate continues to warm. Methods from this study may be used by managers as a guide to assess seagrass ecosystem status in degrading systems.

摘要

大叶藻(Zostera marina L.)是一种关键的基础物种,为北半球的浅海沿岸和河口系统提供多种生态系统服务。据估计,在上个世纪,由于光照减少、富营养化和物理干扰等因素,美国东海岸多达50%的大叶藻栖息地已经丧失。海表温度上升也被认为正在加剧损失,这个生态系统的未来尚不明朗。在这里,我们通过使用海草植物健康和环境质量的常见指标,对位于马萨诸塞州海岸外50公里处的岛屿系统楠塔基特岛上的大叶藻草甸进行了评估。我们的结果表明,楠塔基特岛上的大叶藻草甸在其生长高峰期的部分时段受到热胁迫和光照限制。这表明海表温度与人为富营养化一样,是观察到的大叶藻大规模损失的关键因素,并且随着气候持续变暖,预计未来还会进一步退化。本研究中的方法可供管理人员用作评估退化系统中海草生态系统状况的指南。

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