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Demersal ichthyofaunal shelf communities from the Dumont d'Urville Sea (East Antarctica)

机译:杜蒙德乌尔维尔海(南极东部)的水生鱼鳞鱼类架子群落

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摘要

The RS V Aurora Australis survey allowed the first comprehensive study of the demersal ichthyofaunal environment and of the diversity of the Dumont d'Urville Sea. We observed a high dominance of the Notothenioidei in both the number of species and in integrated abundances. The Nototheniidae was the most abundant family with 44.7% of the total integrated abundance, followed by Bathydraconidae (18.8%). Trematomus eulepidotus was the dominant species with 19.9% of the total individuals catch. Nevertheless, 43 of the 53 species caught could be considered as very rare. The Bathydraconidae was the most diversified family with 11 species caught. The highest integrated abundances of fish were found from 400 to 800 m. Well-structured species communities were observed, with high species richness from 570 to 681 m. The richest zones were located along the basins and along their upper-sides. Statistical analyses indicated large-scale spatial patterns in species composition, with clear differences in fish communities from the continental slopes, the basins and on the shelf. At a finer spatial scale, the current in the George V Basin and iceberg scouring on the banks and their sides tended to create locally heterogeneous small-scale habitats. We suggest that the glacial history and the structured habitats allowed successive colonisations of the seabed by demersal fish.
机译:RS V Aurora Australis的调查允许对水下鱼鳞茎环境和Dumont d'Urville海的多样性进行首次综合研究。我们观察到,在种类数量和综合丰度方面,Notothenioidei的优势明显。 Nototheniidae科是最丰富的科,占总丰富度的44.7%,其次是Bathydraconidae科(18.8%)。耳螨是主要物种,占总捕获量的19.9%。尽管如此,在被捕的53个物种中,有43个被认为是非常稀有的。 y科是最多样化的科,共捕获了11种。鱼类的综合丰度最高,为400至800 m。观察到结构良好的物种群落,物种丰富度从570到681 m。最富裕的区域位于盆地及其上侧。统计分析表明,物种组成具有大规模的空间格局,与大陆坡,盆地和架子上的鱼类群落明显不同。在更精细的空间尺度上,乔治五世盆地中的水流和河岸及其两侧的冰山冲刷往往会创造出局部异质的小规模栖息地。我们认为,冰川的历史和结构化的栖息地允许海底鱼类不断被海底殖民。

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  • 来源
    《Polar science》 |2011年第2期|p.272-285|共14页
  • 作者单位

    MNHN, DMPA-UMR BOREA 7208, 43 rue Cuvier, 75005 Paris, France,EPHE-CNRS, USR 3278, Centre de Biologie et d'Ecologie Tropicale et Me'diterrane'enne, Universite de Perpignan, 52 av. Paul Alduy,66860 Perpignan Cedex, France;

    CNRS UMR 7138 Syste'matique, Adaptation, Evolution, CP26, Museum National d'Histoire Naturelle, 57 rue Cuvier,75231 Paris Cedex 05, France;

    UPMC Universite'Paris 06, UMR 7093, Laboratoire d'Oce'anographie de Villefranche, BP28, 06234 Villefranche-sur-Mer, France,CNRS, UMR 7093, LOV, BP 28, 06234 VMefranche-sur-Mer, France;

    University of Vienna, Department of Marine Biology, Althanstrafie, 14 A-1090 Vienna, Austria;

    MNHN, DMPA-UMR BOREA 7208, 43 rue Cuvier, 75005 Paris, France;

    CNRS UMR 7138 Syste'matique, Adaptation, Evolution, CP26, Museum National d'Histoire Naturelle, 57 rue Cuvier,75231 Paris Cedex 05, France;

    MNHN, DMPA-UMR BOREA 7208, 43 rue Cuvier, 75005 Paris, France;

    MNHN, DMPA-UMR BOREA 7208, 43 rue Cuvier, 75005 Paris, France;

    MNHN, DMPA-UMR BOREA 7208, 43 rue Cuvier, 75005 Paris, France;

    Marine and Coastal Environment Group, Geoscience Australia, GPO Box 378, Canberra ACT 2601, Australia;

    School of Earth and Environmental Sciences, James Cook University, PO Box 6811, Cairns QLD 4870, Australia;

    Australian Antarctic Division, Department of Sustainability, Environment, Water, Population and Communities, 203 Channel Highway,Kingston, Tasmania 7050, Australia;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    east antarctica; demersal fish; notothenioidei; community structure;

    机译:南极洲东部沉鱼notothenioidei;社区结构;

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