Characterizing dominant patterns of spatiotemporal variation for a transboundary groundfish assemblage

IF 1.9 2区 农林科学 Q2 FISHERIES Fisheries Oceanography Pub Date : 2023-06-03 DOI:10.1111/fog.12651
Lukas B. DeFilippo, James T. Thorson, Cecilia A. O'Leary, Stan Kotwicki, Jerry Hoff, James N. Ianelli, Vladimir V. Kulik, Andre E. Punt
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引用次数: 1

Abstract

Many mobile marine taxa are changing their distributions in response to climate change. Such movements pose a challenge to fisheries monitoring and management, particularly in systems where climate-adaptive and ecosystem-based management objectives are emphasized. While shifts in species distributions can be discerned from long-term fisheries-independent monitoring data, distilling coherent patterns across space and time from such datasets can be challenging, particularly for transboundary stocks. One approach for identifying dominant patterns of spatiotemporal variation that has been widely used in physical atmospheric and oceanographic studies is empirical orthogonal function (EOF) analysis, wherein spatiotemporal variation is separated into time-series of annual factor loadings and spatial response maps. Here, we apply an extension of EOF analysis that has been modified for compatibility with biological sampling data to a combined US–Russian fisheries-independent survey dataset that spans the eastern (United States) and western (Russia) Bering Sea shelf to estimate dominant patterns of spatiotemporal variation for 10 groundfish species at a shelf-wide scale. EOF identified one axis of variability that was coherent with the extent of cold (≤0°C) near-bottom waters (the cold pool) previously shown to be a key influence on species distributions and ecosystem structure for the Bering Sea. However, the leading axis of variability identified by our EOF analysis was characterized by low frequency changes in the distributions of several species over longer time scales. Our analysis has important implications for predicting variation in species distributions over time and demonstrates a widely applicable method for leveraging combined fisheries-independent survey datasets to characterize community-level responses to ecosystem change at basin-wide scales.

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跨界底栖鱼类群落时空变化的主导模式特征
许多移动的海洋分类群正在改变其分布以应对气候变化。这种运动对渔业监测和管理构成挑战,特别是在强调适应气候和基于生态系统的管理目标的系统中。虽然可以从独立于渔业的长期监测数据中辨别物种分布的变化,但从这些数据集中提取跨空间和时间的连贯模式可能具有挑战性,特别是对跨界种群而言。在物理大气和海洋学研究中广泛使用的一种识别时空变化主导模式的方法是经验正交函数(EOF)分析,该方法将时空变化分为年因子负荷时间序列和空间响应图。在这里,我们将EOF分析扩展为与生物采样数据的兼容性进行了修改,并将其应用于跨越白令海陆架东部(美国)和西部(俄罗斯)的美俄联合渔业独立调查数据集,以估计大陆架范围内10种底栖鱼类时空变化的主导模式。EOF确定了一个变异性轴,该轴与冷(≤0°C)近底水(冷池)的范围一致,该范围先前被证明是对白令海物种分布和生态系统结构的关键影响。然而,我们的EOF分析确定的变异性的主轴是在较长时间尺度上几种物种分布的低频变化。我们的分析对预测物种分布随时间的变化具有重要意义,并展示了一种广泛适用的方法,可以利用独立于渔业的联合调查数据集来表征全流域范围内群落对生态系统变化的响应。
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来源期刊
Fisheries Oceanography
Fisheries Oceanography 农林科学-海洋学
CiteScore
5.00
自引率
7.70%
发文量
50
审稿时长
>18 weeks
期刊介绍: The international journal of the Japanese Society for Fisheries Oceanography, Fisheries Oceanography is designed to present a forum for the exchange of information amongst fisheries scientists worldwide. Fisheries Oceanography: presents original research articles relating the production and dynamics of fish populations to the marine environment examines entire food chains - not just single species identifies mechanisms controlling abundance explores factors affecting the recruitment and abundance of fish species and all higher marine tropic levels
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