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Climate and cyclic hydrobiological changes of the Barents Sea from the twentieth to twenty-first centuries

机译:20世纪至21世纪巴伦支海的气候和周期性水生生物变化

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摘要

The Barents Sea is a transition zone between North Atlantic and Arctic waters, so its marine ecosystem is highly sensitive to climate dynamics. Understanding of marine biota response to climate changes is necessary to assess the environmental stability and the state of marketable biological resources. These processes are analyzed using a database from the Murmansk Marine Biological Institute which holds oceanographic and hydrobiological data sets collected for more than 100 years along the meridional Kola Transect in the Barents Sea. The data demonstrate high variability in thermal state of the upper layer of the Barents Sea, which is regulated by varying the inflow of Atlantic water and by regional climate. At irregular intervals, cold periods with extended seasonal ice cover are followed by warm periods. The most recent warm period started in the late 1980s and reached its maximum from 2001 to 2006. These cyclic changes in hydrologic regime across the twentieth century and first decade of the twenty-first century are reflected (with a specific lag of 1-5 years) by changes in species composition, as well as abundance and distribution of boreal and arctic groups of macrozoobenthos and fish fauna. For instance, cod and cod fisheries in the Barents Sea are closely linked to the marine climate. Furthermore, Kamchatka crab stock recruitment benefited from the warm climate of 1989 and 1990. In general, studies in this region have shown that climatic dynamics may be assessed using biological indices of abundance, biomass, and migration of marine organisms, including commercial species.
机译:巴伦支海是北大西洋和北极水域之间的过渡区,因此其海洋生态系统对气候动态高度敏感。了解海洋生物群对气候变化的反应对于评估环境稳定性和可销售的生物资源的状态十分必要。使用摩尔曼斯克海洋生物研究所的数据库对这些过程进行了分析,该数据库保存着沿巴伦支海子午科拉断面收集了100多年的海洋学和水生生物学数据集。数据表明,巴伦支海上层的热态高度可变,这通过改变大西洋水的流入量和区域气候来调节。在不规则的时间间隔内,寒冷的季节伴随着季节性冰盖的延长,随后是温暖的时期。最近的温暖期始于1980年代后期,并在2001年至2006年达到最高峰。反映了整个20世纪至21世纪前十年水文状况的周期性变化(特定的滞后时间为1-5年) ),因为物种组成的变化,以及大型动物和鱼类的北方和北极群体的数量和分布。例如,巴伦支海的鳕鱼和鳕鱼渔业与海洋气候密切相关。此外,堪察加半岛螃蟹种群的募集得益于1989年和1990年的温暖气候。总体而言,该地区的研究表明,可以使用丰度,生物量和海洋生物(包括商业物种)迁移的生物指标来评估气候动态。

著录项

  • 来源
    《Polar biology》 |2012年第12期|1773-1790|共18页
  • 作者单位

    Murmansk Marine Biological Institute, Kola Scientific Centre, Russian Academy of Sciences, Vladimirskaya St. 17, 183010 Murmansk, Russia;

    Murmansk Marine Biological Institute, Kola Scientific Centre, Russian Academy of Sciences, Vladimirskaya St. 17, 183010 Murmansk, Russia;

    Murmansk Marine Biological Institute, Kola Scientific Centre, Russian Academy of Sciences, Vladimirskaya St. 17, 183010 Murmansk, Russia;

    Murmansk Marine Biological Institute, Kola Scientific Centre, Russian Academy of Sciences, Vladimirskaya St. 17, 183010 Murmansk, Russia;

    Murmansk Marine Biological Institute, Kola Scientific Centre, Russian Academy of Sciences, Vladimirskaya St. 17, 183010 Murmansk, Russia;

    Murmansk Marine Biological Institute, Kola Scientific Centre, Russian Academy of Sciences, Vladimirskaya St. 17, 183010 Murmansk, Russia;

    Murmansk Marine Biological Institute, Kola Scientific Centre, Russian Academy of Sciences, Vladimirskaya St. 17, 183010 Murmansk, Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    barents sea; cyclic climate change; ecosystem response; cod; kamchatka crab; macrozoobenthos;

    机译:巴伦支海;周期性的气候变化;生态系统反应;鳕鱼堪察加蟹;大型动物;

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