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Environmental impacts on walleye pollock (Gadus chalcogrammus) distribution across the Bering Sea shelf

机译:对Walleye Pollock(Gadus Chalcogmus)分布在白架海架上的环境影响

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摘要

Adult and juvenile (age-1) walleye pollock (Gadus chalcogrammus) were sampled by the US NOAA Alaska Fisheries Science Center summer bottom trawl survey in 2010, 2017, 2018, and 2019 in the northeastern and southeastern Bering Sea, with profiles of temperature collected concurrently. Similarly, the Russian Research Institute of Fisheries and Oceanography, Pacific branch, collected adult and juvenile pollock and temperature profiles on summer bottom trawl surveys in the northwestern Bering Sea. Results from these surveys show that adult pollock abundance in recent years (2017, 2018, 2019) has increased in northern regions of the Bering Sea shelf in both the US and Russian sectors. Lower abundances, compared to historic means, were observed in southern regions of the shelf, suggesting the pollock moved directionally from the south to the north. We relate changes in pollock distribution in recent intermediate (2017) and warm, low-ice years (2018-2019) to a prior cold, high-ice year (2010) and describe how these observations relate to our longer time series. We link temperature data from bottom trawl surveys (US and Russian), sea-ice indices (retreat timing and extent), as well as model-based estimates of ocean circulation to changes in pollock distribution and examine potential environmental factors driving the observed changes. Changes in sea-ice and bottom temperature (e.g., reductions in ice extent and shrinking of the cold pool), and changes in circulation (stronger northward currents over the northeastern shelf in warmer years, particularly in 2018) led to changes in distributions of adult and age-1 pollock. Adult pollock were concentrated north of St. Lawrence Island and had larger longitudinal distributions in warm years, 2017-2019; whereas they had a more southerly and narrow distribution over the outer shelf in the cold year, 2010. Age-1 pollock had higher densities over the inner eastern shelf in 2017-2019 compared to 2010. Northward flow around St. Lawrence Island (particularly in the spring) alternated between stronger flow on the west side of the island in 2010 and 2017 and stronger flow on the east side of the island in 2018 and 2019; variations in flow may have impacted the location of prey and movement of feeding pollock to the Chukchi Sea. Size structure comparisons between NW, NE and SE sections of the Bering Sea shelf suggest that movement of fish between US and Russian waters may have been highest in 2019, one of the two warmest years, and lowest in 2010, the coldest year. Spatial comparisons of distributions and size structure across the Bering Sea help provide a comprehensive view of factors affecting the movement of this highly important commercial fish species.
机译:成人和少年(1岁)Walleye Pollock(Gadus Chalcogrammus)被美国Noaa阿拉斯加渔业科学中心夏季底拖网调查在2010年,2017年,2018年,2010年,在东北和东南部的海滩上,收集温度的概况同时。同样,俄罗斯渔业和海洋学,太平洋分公司,收集的成人和少年波拉洛克和温度曲线在夏季底部拖网中的温度曲线。这些调查结果表明,近年来成人波洛克丰度(2017年,2019年,2019年)在美国和俄罗斯部门的白垩海架的北部地区增加。与历史手段相比,较低的丰富,在架子的南部地区观察到,暗示波洛克方向向北移动。我们在最近的中级(2017年)和温暖,低冰岁(2018-2019)对先前的寒冷,高冰年(2010)中的温暖,低冰年(2010)中的改变,并描述了这些观察结果如何与我们的较长时间序列有关。我们将温度数据从底部拖网调查(美国和俄语),海冰指数(撤退时间和范围)以及对海洋循环的模型估算,以改变Pollock分布,并检查促进观察到的变化的潜在环境因素。海冰和底部温度的变化(例如,在冰范围内减少冰水池的收缩),以及循环的变化(在东北架上越来越强的北方货架,特别是2018年)导致了成人分布的变化和5岁的波洛克。成人波洛克在圣劳伦斯岛的北部集中,在温暖年度纵向分布较大,2017 - 2019年;虽然他们在寒冷的一年里,在寒冷的年度,在2010年的寒冷年度,在寒冷的年度上有一个更南外狭窄的分布。2017 - 2019年,1岁的波洛克在2010年至2019年的内部东部货架上具有更高的密度。与2010年的北方劳伦斯岛周围的向北流动(特别是春天)2010年和2017年在岛屿西侧的较强流动之间交替,2018年和2019年在岛屿的东侧更强流动;流动的变化可能会影响饲喂波特洛克的猎物和运动的位置。 Bering Sea Shelf的NW,NE和SE部分之间的尺寸结构比较表明,美国和俄罗斯水域之间的鱼类在2019年的鱼类中可能最高,最热烈的历史,最低年度最低,最冷的一年。跨越海域的分布和尺寸结构的空间比较有助于了解影响这一非常重要的商业鱼类的运动的因素。

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