复杂种群中持续和动态聚集的跨尺度环境影响:对渔业管理的影响

IF 1.9 2区 农林科学 Q2 FISHERIES
Georgios Kerametsidis, James T Thorson, Vincent Rossi, D. Álvarez-Berastegui, Cheryl Barnes, Gregoire Certain, Antonio Esteban, Encarnacion García, A. Jadaud, Safo Piñeiro, Miguel Vivas, Manuel Hidalgo
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引用次数: 0

摘要

考虑海洋种群的时空复杂性已成为新一代种群评估中最迫切需要改进的内容之一。解开持久的和动态的种群子成分,并了解其变异的主要驱动因素仍然是种群特有的挑战。在此,我们假设两种相邻鱼类种群密度的时空变异与跨时空尺度的空间结构化环境过程有关。为了验证这一点,我们将广义经验正交函数和动态因子分析应用于西地中海高度商业物种红鲻鱼的渔业独立和依赖数据。在这两种种群中都发现了持续和动态高聚集的区域。大尺度气候指数和局部公海对流与两种种群有关,而其他变量则表现出种群特有的效应。我们还揭示了在检查的管理单元内的空间结构密度动态。这表明了一种元种群结构,并支持了未来空间种群评估的实施。考虑到泛群结构和与邻近种群单位缺乏连通性的常见假设,我们的方法可以应用于具有假定空间复杂性的其他物种和系统,以提供更准确的生物种群结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cross-scale environmental impacts across persistent and dynamic aggregations within a complex population: implications for fisheries management
Accounting for marine stocks spatiotemporal complexity has become one of the most pressing improvements that should be added to the new generation of stock assessment. Disentangling persistent and dynamic population subcomponents and understanding their main drivers of variation are still stock-specific challenges. Here, we hypothesized that the spatiotemporal variability of two adjacent fish stocks density is associated with spatially structured environmental processes across multiple spatiotemporal scales. To test this, we applied a generalized Empirical Orthogonal Function and Dynamic Factor Analysis to fishery-independent and -dependent data of red mullet, a highly commercial species, in the Western Mediterranean Sea. Areas with persistent and dynamic high aggregations were detected for both stock units. A large-scale climatic index and local open-ocean convection were associated with both stocks while other variables exhibited stock-specific effects. We also revealed spatially structured density dynamics within the examined management units. This suggests a metapopulation structure and supports the future implementation of a spatial stock assessment. Considering the common assumptions of panmictic structure and absence of connectivity with neighbouring stock units, our methodology can be applied to other species and systems with putative spatial complexity to inform a more accurate structure of biological populations.
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来源期刊
Canadian Journal of Fisheries and Aquatic Sciences
Canadian Journal of Fisheries and Aquatic Sciences 农林科学-海洋与淡水生物学
CiteScore
4.60
自引率
12.50%
发文量
148
审稿时长
6-16 weeks
期刊介绍: The Canadian Journal of Fisheries and Aquatic Sciences is the primary publishing vehicle for the multidisciplinary field of aquatic sciences. It publishes perspectives (syntheses, critiques, and re-evaluations), discussions (comments and replies), articles, and rapid communications, relating to current research on -omics, cells, organisms, populations, ecosystems, or processes that affect aquatic systems. The journal seeks to amplify, modify, question, or redirect accumulated knowledge in the field of fisheries and aquatic science.
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