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Contribution of ocean variability to climate-catch models of Pacific sardine

机译:海洋变化对太平洋沙丁鱼气候捕获模型的贡献

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Small-pelagic fishes are economically and ecologically important as they make up a large proportion of wild caught fisheries and provide an important link between planktonic organisms and higher trophic level organisms such as piscivorous fishes, squid, seabirds and marine mammals. In the California Current Ecosystem (CCE), the distribution and abundance of Pacific sardine (Sardinops sagax) is influenced by both natural climate variability and exploitation. This study uses Generalized Additive Models to evaluate the effects of environmental forcing at multiple spatial scales (i.e. local, regional and basin) on sardine catch recorded at British Columbia (CAN), California (USA) and Bahia Magdalena (MEX). We find that the Pacific Circulation Index, sea surface temperature, upwelling strength, and primary productivity were the most influential factors explaining variability of sardine catch in the northeastern Pacific Ocean. Our CCE-wide analysis shows that regional scale environmental variability best explained catch rates of the Pacific sardine for California and Bahia Magdalena while basin-scale environmental variability did so for catch rates for British Columbia.
机译:小上层鱼类在经济上和生态上都很重要,因为它们构成了野生捕捞渔业的很大一部分,并在浮游生物与较高营养水平的生物(例如食鱼,鱿鱼,海鸟和海洋哺乳动物)之间建立了重要的联系。在加利福尼亚州当前的生态系统(CCE)中,太平洋沙丁鱼(Sardinops sagax)的分布和丰富度受自然气候多变性和开发影响。这项研究使用广义可加模型来评估在多个空间尺度(即本地,区域和盆地)的环境强迫对不列颠哥伦比亚(CAN),加利福尼亚(美国)和巴伊亚马格达莱纳(MEX)记录的沙丁鱼捕获量的影响。我们发现,太平洋环流指数,海面温度,上升流强度和初级生产力是解释东北太平洋沙丁鱼捕获量变化的最主要因素。我们在CCE范围内的分析表明,区域规模的环境变异性可以最好地解释加利福尼亚州和巴伊亚州马格达莱纳州的太平洋沙丁鱼的捕获率,而盆地规模的环境变异性可以解释不列颠哥伦比亚省的捕获率。

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