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The Lower Danube River-Danube Delta-North West Black Sea: A pivotal area of major interest for the past, present and future of its fish fauna - A short review

机译:多瑙河下游-多瑙河三角洲-黑海西北部:一个重要的枢纽地区,其鱼类区系的过去,现在和未来都很受关注-简短评论

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摘要

The complex Danube-Black Sea geoecosystem, created by a unique combination of integrated biotopes and biocoenoses related forces and counter-forces in time and space, forms a rich "ichthyosystem". The equilibrium among the fish species captured in the Danube Delta reveals its structural and functional roles in the connectivity of the Danube and Black Sea. The key role of the delta is evidenced by the fact that 57.26% of the Lower Danube-Danube Delta-North West Black Sea fish species use two or three of the subsystems in terms of habitats. Therefore, this convergence area can be considered to be a dynamic and rich "ichthyosystem", with three subsystems. All three evolved interdependently, which permits their flexibility and adaptation in an interdependent way. The habitat heterogeneity, native economic and conservation priority fish species of the Lower Danube-Danube Delta-North Western Black Sea have decreased significantly, and there are no indications that this trend will be halted soon. The Danube "sub-ichtyosystem" seems to be more directly affected than the others. The Lower Danube-Danube Delta-North Western Black Sea "ichthyosystem" exhibits a significant level of flexibility, resilience and adaptation over geological time, but has become much more sensitive to environmental perturbations due to the last century of human impact This "ichthyosystem" is affected by non-native fish species. The study area represents an interdependent ecological net, without which the specific "ichthyosystem" formed over geological time will disappear. The studied ecological net fish fauna is an accurate indicator of various human pressures. The Lower Danube-Danube Delta-North West Black Sea geoecosystem, in which the Danube Delta provides the pivotal habitat element, is the matrix for a unique "ichthyosystem." However, human impacts decrease its resilience and can induce its extinction.
机译:复杂的多瑙河-黑海地质生态系统由整合的生物群落和生物毒素相关的力以及时空的反作用力的独特结合而形成,形成了一个丰富的“鱼鳞系统”。多瑙河三角洲捕获的鱼类物种之间的平衡揭示了其在多瑙河和黑海之间的连通性中的结构和功能作用。下多瑙河-多瑙河三角洲-西北黑海鱼类中有57.26%的栖息地使用了两个或三个子系统,这一事实证明了三角洲的关键作用。因此,可以将这个收敛区域视为具有三个子系统的动态且丰富的“鱼鳞系统”。所有这三个都是相互依存的,这使得它们的灵活性和适应性可以相互依存。下多瑙河-多瑙河三角洲-西北黑海的栖息地异质性,本地经济和保护优先鱼类种类已大大减少,没有迹象表明这种趋势将很快停止。多瑙河的“亚鱼类系统”似乎比其他系统受到更直接的影响。下多瑙河-多瑙河三角洲-西北黑海“鱼鳞生物系统”在地质时期表现出显着的灵活性,适应性和适应性,但由于上个世纪的人类影响,它对环境扰动变得更加敏感。受非本地鱼类的影响。研究区域代表了一个相互依存的生态网络,没有它,随时间推移形成的特定“鱼鳞系统”将消失。所研究的生态网鱼的动物区系是各种人类压力的准确指标。下多瑙河-多瑙河三角洲-西北黑海地质生态系统是唯一的“鱼鳞系统”的基质,多瑙河三角洲提供了关键的栖息地元素。但是,人类的影响会降低其复原力并导致其灭绝。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第1期|137-151|共15页
  • 作者单位

    'Lucian Blaga' University of Sibiu, Faculty of Sciences, Applied Ecology Research Centre, 5-7 I. Ratiu Street, Sibiu 550012, Romania;

    School of Natural Sciences, Institute of Aquaculture, University of Stirling, Stirling FK9 4LA, Scotland, UK;

    Institute of Biodiversity and Ecosystem Research, Bulgarian Academy of Sciences, 1 Tsar Osvoboditel Blvd., Sofia 1000, Bulgaria;

    Institute for Biological Research, University of Belgrade, 142 Bulevar Despota Stefana, Belgrade 11000, Serbia;

    'Lucian Blaga' University of Sibiu, Faculty of Sciences, Applied Ecology Research Centre, 5-7 I. Ratiu Street, Sibiu 550012, Romania;

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

    Geoecosystem; Ichthyosystem; Spatial dynamics; Temporal trends;

    机译:地球生态系统鱼鳞系统空间动力学;时间趋势;

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