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Internal distributions of a radio-element array in cartilaginous and bony marine fishes: Different and heterogeneous

机译:软骨和骨鱼类鱼中的无线电元阵列的内部分布:不同和异质的

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摘要

This experimental study determined internal distributions of an array of radio-elements (54Mn, 60Co, 65Zn, 134Cs, 241Am, 109Cd, 110mAg, 75Se and 51Cr) accumulated from seawater by three chondrichthyan fish species (Scyliorhinus canicula (dogfish), Raja undulata (undulate ray) and Torpedo marmorata (spotted torpedo)) and three teleost species (Scophthalmus maximus (turbot), Sparus aurata (seabream) and Dicentrarchus labrax (seabass)). The study tested the hypothesis that the chondrichthyan (cartilaginous) fish taxon and teleost (bony) fish taxon have different patterns of bioaccumulation of these radio-elements in six body components (head, digestive tract, liver, kidneys, skin and muscle), consistent with their long period of evolutionary divergence. Comparisons of body component CFs between the two taxa for each radio-element and the full array of radio-elements showed highly significant differences (p = 0.001) between cartilaginous and bony fishes in each body component, confirming the existence of a strong and pervasive phylogenetic signal; however, the subset of radio-elements most determinant of these differences were unique for each body component. Partitioning between the three individual bony species and the three individual cartilaginous species also occurred repeatedly among their body components, particularly for bony fishes. Distributions of these radio-elements among body components were typically highly heterogeneous for both fish taxa.
机译:该实验研究确定了从海水中累积的无线电元素阵列(54mn,60co,65℃,134cs,241am,109cd,110mag,75se和51cc)的内部分布通过三种Chondrichthyan鱼类(Scyliorhinus canicula(鲨鱼),Raja undulata(波动射线)和鱼雷marmorata(斑点鱼雷))和三种电源物种(scophthalmus maximus(turbot),sparus aurata(Seabream)和dicentrarchus labrax(Seabass))。该研究检测了软骨辛(软骨)鱼类分类群和电视(骨)鱼类分类的假设在六个身体成分(头部,消化道,肝脏,肾脏,皮肤和肌肉)中具有不同的生物累积模式,这是一致的他们长期的进化分歧。对于每个无线电元素的两个分类群和全阵列无线电元件之间的身体成分CFS的比较显示出每个身体部件中的软骨和骨鱼之间的高显着差异(P <0.001),确认存在强大和普及的系统发育信号;然而,这些差异的大多数决定簇的无线电元素的子集对每个主体部件都是独特的。在其身体部件中,三种单独的骨骼物种和三种单独的软骨物种之间的分区,特别是对于骨鱼。对于鱼类分类,这些无线电元素之间的这些无线电元素的分布通常是高度异质的。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2021年第10期|106709.1-106709.15|共15页
  • 作者单位

    Jeffree Conservat & Res 45 Casuarina Rd Alfords Point 2234 Australia;

    Aquat Solut Int North Narrabeen Beach NSW 2101 Australia|Macquarie Univ Dept Earth & Environm Sci N Ryde NSW 2109 Australia;

    IAEA Environm Labs Marine Radioecol Lab 4 Quai Antoine MC-98000 Monaco Monaco;

    IAEA Environm Labs Marine Radioecol Lab 4 Quai Antoine MC-98000 Monaco Monaco;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioaccumulation; Radionuclides; Metals; Fish; Cartilaginous; Bony;

    机译:生物累积;放射性核素;金属;鱼;软骨;骨;

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