Climate-driven shifts in pelagic fish distributions in a rapidly changing Pacific Arctic

IF 2.3 3区 地球科学 Q2 OCEANOGRAPHY Deep-sea Research Part Ii-topical Studies in Oceanography Pub Date : 2023-04-01 DOI:10.1016/j.dsr2.2022.105244
Robert M. Levine , Alex De Robertis , Daniel Grünbaum , Sharon Wildes , Edward V. Farley , Phyllis J. Stabeno , Christopher D. Wilson
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引用次数: 6

Abstract

Baseline surveys of offshore pelagic fishes in the eastern Chukchi Sea in 2012 and 2013 found that age-0 Arctic cod (Boreogadus saida) dominated the pelagic fish community in summer, with relatively few adults present in the region. Since this time, drastic changes in the ocean-atmosphere-ice feedback loop have led to continued warming, further reducing ice cover, and increased northward transport has led to an increase in Pacific-origin waters on the Chukchi shelf in summer. To examine potential bottom-up effects of these environmental changes on pelagic fishes in this rapidly changing environment, we extended a time series of large-scale acoustic-trawl surveys with additional surveys in 2017 and 2019. Age-0 Arctic cod were the most abundant pelagic fish in all four survey years, comprising 68–93% of fish abundance. However, age-0 walleye pollock (Gadus chalcogrammus), which were scarce (<0.1% of fishes) and confined to the southern Chukchi in 2012 and 2013, were present in high abundance (>21% of fish abundance) throughout the Chukchi shelf in 2017 and 2019. Age-0 Arctic cod were substantially more abundant in 2017 than in other years, possibly due to increased survivorship of larvae under warm conditions. Unlike in 2017, Arctic cod and pollock were spatially separated in 2019 due to enhanced transport, with Arctic cod primarily present in the northeastern portion of the survey area, which was characterized by cool surface and bottom temperatures. The substantial increase in abundance of age-0 pollock in recent years suggests that environmental conditions now allow this species to extend its northern range into the southern and central Chukchi Sea, at least on a seasonal basis. The changes in abundance and species composition of pelagic fishes in the 2012–2019 time series are tightly coupled to recent changes in sea ice, temperature, and the increasing transport of Bering Sea waters through Bering Strait into the Chukchi Sea. Given that the environment is expected to experience further warming and increased transport, these northward shifts in species distribution are likely to persist in the future.

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气候驱动的太平洋-北极快速变化中上层鱼类分布的变化
2012年和2013年对楚科奇海东部近海中上层鱼类的基线调查发现,0岁的北极鳕鱼(Boreogadus saida)在夏季主导了中上层鱼类群落,该地区的成年鳕鱼相对较少。从那时起,海洋-大气冰反馈回路的剧烈变化导致持续变暖,进一步减少了冰盖,向北输送的增加导致夏季楚科奇大陆架太平洋起源水域的增加。为了研究在这种快速变化的环境中,这些环境变化对远洋鱼类的潜在自下而上的影响,我们在2017年和2019年延长了一系列大规模声学拖网调查,并增加了调查。在所有四个调查年份中,0岁北极鳕鱼是数量最多的中上层鱼类,占鱼类数量的68%至93%。然而,0岁的walleye鳕鱼(Gadus chalcogrammus)在2012年和2013年都很稀少(<0.1%的鱼类),仅限于楚科奇南部,2017年和2019年,它在整个楚科奇大陆架以高丰度(>21%的鱼类丰度)存在。2017年,0岁北极鳕鱼的数量远比其他年份丰富,这可能是由于在温暖条件下幼虫的存活率增加。与2017年不同的是,由于运输增强,2019年北极鳕鱼和鳕鱼在空间上分离,北极鳕鱼主要分布在调查区的东北部,其特征是表面和底部温度较低。近年来,0岁鳕鱼的数量大幅增加,这表明环境条件现在允许该物种至少在季节性的基础上将其北部范围扩展到楚科奇海南部和中部。2012-2019年时间序列中上层鱼类丰度和物种组成的变化与最近海冰、温度的变化以及白令海水域通过白令海峡进入楚科奇海的增加密切相关。鉴于环境预计将经历进一步变暖和运输增加,这些物种分布的向北转移可能会在未来持续下去。
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来源期刊
CiteScore
6.40
自引率
16.70%
发文量
115
审稿时长
3 months
期刊介绍: Deep-Sea Research Part II: Topical Studies in Oceanography publishes topical issues from the many international and interdisciplinary projects which are undertaken in oceanography. Besides these special issues from projects, the journal publishes collections of papers presented at conferences. The special issues regularly have electronic annexes of non-text material (numerical data, images, images, video, etc.) which are published with the special issues in ScienceDirect. Deep-Sea Research Part II was split off as a separate journal devoted to topical issues in 1993. Its companion journal Deep-Sea Research Part I: Oceanographic Research Papers, publishes the regular research papers in this area.
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