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首页> 外文期刊>Fisheries Research >Supplementing electronic tagging with conventional tagging to redesign fishery closed areas
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Supplementing electronic tagging with conventional tagging to redesign fishery closed areas

机译:用传统标签补充电子标签,以重新设计渔业禁区

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Fishery closed areas provide a resource management tool to protect predictable spawning aggregations of migratory fish species. Movement by individual fish however challenges the effectiveness of fishery closed areas. Recent developments in electronic tags and movement modelling offer new information to quantify fine-scale usages of fishery closed areas by free-ranging individuals. Conventional tagging data, on the other hand, inform on population broad-scale distribution patterns with respect to closed areas. Using the Atlantic cod (Gadus morhua) population from the northern Gulf of St. Lawrence as a case study, we demonstrate how electronic tagging experiments can be supplemented with conventional tagging experiments to evaluate and redesign fishery closed areas. A geolocation model was used to estimate time of arrival, time of departure, and proportion of time that individual cod equipped with data-storage tags spent within a fishery closed area. Two optimization algorithms were developed to seek out the spatial and temporal designs that maximized the proportion of time that the fish equipped with data-storage tags spent inside the closed area, relative to its size and duration. Bootstrap analyses quantified the effects of inter-individual variability in closed area usages. Conventional tagging data were used to estimate the proportion of the spawning population density function encompassed by the closed area. Results from the electronic and conventional tagging experiments suggested that the fishery closed area in the northern Gulf of St Lawrence should be displaced south along the 200-m isobath and that the enforcement period be reduced. Electronic tagging data also suggested that alternative migratory behaviours within a population lead to disproportional levels of protection between migratory and non-migratory groups. A re-examination of past conventional tagging experiments in combination with recent electronic tagging experiments provides new information to evaluate the spatiotemporal design of fishery closed areas
机译:禁渔区提供了一种资源管理工具,以保护可迁移鱼类的可预期产卵聚集。但是,单个鱼类的运动挑战了禁渔区的有效性。电子标签和运动模型的最新发展提供了新的信息,可以通过自由放养的个人来量化渔业禁区的精细用途。另一方面,常规标签数据可提供有关封闭区域的人口大规模分布模式。以圣劳伦斯湾北部的大西洋鳕(Gadus morhua)种群为例,我们演示了如何将电子标签实验与常规标签实验相辅相成,以评估和重新设计渔业禁区。地理定位模型用于估计到达时间,离开时间以及配备有数据存储标签的单个鳕鱼在渔业禁区内度过的时间比例。开发了两种优化算法来寻找时空设计,这些设计可以使配备有数据存储标签的鱼类在封闭区域内度过的时间比例(相对于其大小和持续时间)最大化。引导分析分析了个体间可变性在禁区使用中的影响。常规标记数据用于估计封闭区域所包含的产卵种群密度函数的比例。电子和常规标记实验的结果表明,圣劳伦斯湾北部的渔业禁区应沿200米等深线向南移动,并缩短执行周期。电子标签数据还表明,人口内部的其他迁徙行为会导致迁徙群体与非迁徙群体之间的保护程度不成比例。对过去常规标记实验的重新检验与最近的电子标记实验的结合,为评估渔业禁区的时空设计提供了新信息。

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