Seagrass ecosystem recovery: Experimental removal and synthesis of disturbance studies

IF 3.8 1区 地球科学 Q1 LIMNOLOGY Limnology and Oceanography Pub Date : 2024-06-27 DOI:10.1002/lno.12608
Spencer J. Tassone, Carolyn J. Ewers Lewis, Karen J. McGlathery, Michael L. Pace
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Abstract

Net global losses of seagrasses have accelerated efforts to understand recovery from disturbances. Stressors causing disturbances (e.g., storms, heatwaves, boating) vary temporally and spatially within meadows potentially affecting recovery. To test differential recovery, we conducted a removal experiment at sites that differed in thermal stress for a temperate seagrass (Zostera marina). We also synthesized prior studies of seagrass recovery to assess general patterns. Seagrass shoots were removed from 28.3 m2 plots at edge and central sites of a meadow in South Bay, Virginia, USA. We hypothesized faster recovery for edge plots where greater oceanic exchange reduces thermal stress. Contrary to our hypothesis recovery was most rapid in the central meadow matching control site shoot density in 24 months. Recovery was incomplete at the meadow edge and estimated to require 158 months. Differences in recovery were likely due to storm-driven sediment erosion at the edge sites. Based on data from prior recovery studies, which were primarily on monospecific meadows of Zostera, seagrasses recover across a broad range of conditions with a positive, nonlinear relationship between disturbance area and recovery time. Our experiment indicates position within a seagrass meadow affects disturbance susceptibility and length of recovery. Linking this finding to our literature synthesis suggests increased attention to spatial context will contribute to better understanding variation in recovery rates.

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海草生态系统的恢复:实验清除和干扰研究综述
全球海草的净损失加速了人们了解受干扰后恢复情况的努力。造成干扰的压力因素(如风暴、热浪、划船)在草甸内部存在时间和空间上的差异,可能会影响恢复。为了测试不同的恢复情况,我们在温带海草(Zostera marina)热应力不同的地点进行了移除实验。我们还综合了之前关于海草恢复的研究,以评估一般模式。我们从美国弗吉尼亚州南湾草甸边缘和中心地带的 28.3 平方米地块中移除了海草嫩芽。我们假设边缘地块的恢复速度更快,因为海洋交换量更大,可以减少热应力。与我们的假设相反,中心草地的恢复速度最快,24 个月内就达到了对照地点的嫩枝密度。草甸边缘的恢复不完全,估计需要 158 个月。恢复过程中的差异很可能是由于风暴导致的边缘地区沉积物侵蚀造成的。之前的恢复研究主要针对 Zostera 的单一草甸,根据这些研究的数据,海草在各种条件下都能恢复,干扰面积与恢复时间之间呈正非线性关系。我们的实验表明,海草草甸中的位置会影响对干扰的敏感性和恢复时间的长短。将这一发现与我们的文献综述联系起来,表明加强对空间环境的关注将有助于更好地理解恢复速度的变化。
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来源期刊
Limnology and Oceanography
Limnology and Oceanography 地学-海洋学
CiteScore
8.80
自引率
6.70%
发文量
254
审稿时长
3 months
期刊介绍: Limnology and Oceanography (L&O; print ISSN 0024-3590, online ISSN 1939-5590) publishes original articles, including scholarly reviews, about all aspects of limnology and oceanography. The journal''s unifying theme is the understanding of aquatic systems. Submissions are judged on the originality of their data, interpretations, and ideas, and on the degree to which they can be generalized beyond the particular aquatic system examined. Laboratory and modeling studies must demonstrate relevance to field environments; typically this means that they are bolstered by substantial "real-world" data. Few purely theoretical or purely empirical papers are accepted for review.
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