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Quantifying recovery rates and resilience of seabed habitats impacted by bottom fishing

机译:量化的回收率和弹性海底栖息地影响下钓鱼

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摘要

1. The Ecosystem Approach to Fisheries requires that managers take account of the environmental impacts of fishing. Towed bottom-fishing gears disturb seabed habitats and cause mortality of benthic invertebrates. Measurements of recovery rates of marine habitats after fishing disturbance can provide insight into spatial variations in resilience and may be used to assess the sustainability of these fishing impacts and inform the development of appropriate management strategies. 2. To measure recovery on real fishing grounds at fishery- and management-relevant scales, we estimated the post-disturbance recovery rates of epifaunal marine benthic communities on coarse and hard substrata across >4000 km~2 of seabed where the patchy distribution of bottom fishing in space and time creates a mosaic of habitat patches at different stages of recovery. 3. The history of fishing events at each location was described using satellite vessel monitoring system (VMS) data. Recovery rates were extrapolated from the relationship between time since the last fishing event and abundance of epifaunal benthic invertebrates with life-history traits that are expected to make them sensitive to fishing. 4. Recovery of abundance of all species and functional groups (medium to medium-large size, medium to long life span, suspension feeding, high body flexibility and low mobility species) was estimated to take 10 years, depending on the group, with faster recovery in areas with faster tidal currents. 5. The recovery of large species was faster when conspecifics were abundant within a radius of 6 km, suggesting an important role for maintaining local sources of recruits to repopulate impacted areas. 6. Synthesis and applications. We used a new method to estimate the recovery rate of benthic communities and to describe spatial differences in sensitivity to fishing. Bottom fishing in areas that recover quickly will minimize overall impacts, while leaving unfished patches of seabed will enhance recovery rates in fished areas. We conclude that management plans which limit bottom trawls and dredge fisheries to more resilient areas and maintain unfished patches within these areas will minimize the collective impacts of a given amount of fishing effort on seabed habitats.
机译:1. 经理考虑的环境的影响钓鱼。打扰海底栖息地和导致的死亡率底栖无脊椎动物。利率的海洋栖息地在钓鱼干扰可以提供洞察空间弹性和可用于的变化评估这些渔业的可持续发展影响并告知适当的发展管理策略。真正的渔场渔业,management-relevant尺度,我们估计post-disturbance epifaunal的回收率海洋底栖生物群落在粗和硬下层在> 4000公里的海底~ 2在太空中片状分布底钓和时间创建一个马赛克的生境斑块不同的复苏阶段。钓鱼事件被描述在每个位置利用卫星船舶监控系统(VMS)数据。时间自上次钓鱼之间的关系事件和大量的epifaunal底栖生物无脊椎动物的生活史特性将使他们敏感钓鱼。丰富的物种和复苏官能团(介质中大尺寸,中长期寿命、悬架喂养,高身体的灵活性和低迁移物种)估计采取 10年,不同吗地区的集团,更快的恢复更快的潮流。物种是在同种个体更快丰富的6公里半径内,暗示一个重要的作用对维持当地的来源新兵政治学的影响区域。合成和应用程序。估计底栖生物的回收率社区和描述空间差异在对钓鱼。快速恢复将减少总体的区域影响,而unfished海床的补丁在捕鱼的海域将提高回收率。得出结论,管理计划限制拖网和疏浚渔业更有弹性在这些地区和维护unfished补丁地区将集体的影响最小化给定的钓鱼的努力在海床上栖息地。

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