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Mercury in the tissues of five cephalopods species: First data on the nervous system

机译:汞在五种头孢粒ods种类的组织中:神经系统的第一数据

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摘要

Mercury (Hg), one of the elements most toxic to biota, accumulates within organisms throughout their lifespan and biomagnifies along trophic chain. Due to their key role in marine systems, cephalopods constitute a major vector of Hg in predators. Further, they grow rapidly and display complex behaviours, which can be altered by neurotoxic Hg. This study investigated Hg concentrations within 81 cephalopod specimens sampled in the Bay of Biscay, which belonged to five species: Eledone cirrhosa, Sepia officinalis, Loligo vulgaris, Todaropsis eblanae and Illex coindetii. Hg concentrations were measured in the digestive gland, the mantle muscle and the optic lobes of the brain. The digestive gland and the mantle were tissues with the most concentrated Hg among all species considered (up to 1.50 μg.g~(-1) dw), except £. cirrhosa. This benthic cephalopod had 1.3-fold higher Hg concentrations in the brain (up to 1.89 μg.g~(-1) dw) than in the mantle, while other species had 2-fold lower concentrations of Hg in the brain than in the mantle. Brain-Hg concentrations can be predicted from muscle-Hg concentrations for a given species, which facilitates the assessment of Hg toxicokinetics in cephalopods. In the most contaminated E. cirrhosa individual, the chemical form of Hg in its digestive gland, mantle muscle and optic lobes, was determined using High energy-Resolution X-ray Absorption Near Edge Structure (HR XANES) spectroscopy. In the digestive gland, 33 ± 11% of total Hg was inorganic Hg speciated as a dicysteinate complex (Hg(Cys)_2). which suggested that the demethylation of dietary MeHg occurs in this organ. All Hg found in the mantle muscle and the optic lobes is methylated and bound to one cysteinyl group (MeHgCys complex), which implies that dietary MeHg is distributed to these tissues via the bloodstream. These results raised the questions regarding interspecific differences observed regarding Hg brain concentrations and the possible effect of Hg on cephalopod functional brain plasticity and behaviour.
机译:汞(Hg)是对生物群最大毒性的元素之一,沿着营养链的寿命和生物镀锌累积在生物体内。由于其在海洋系统中的关键作用,Cephalopods构成了捕食者中HG的主要载体。此外,它们迅速增长并显示复杂的行为,其可以通过神经毒性Hg改变。本研究研究了在贝斯卡湾的81个Cephalopod标本中调查了HG浓度,属于五种物种:Eledone Cirrhosa,Sepia Officinalis,Loligo寻常,Todaropsis Eblanae和Illex Coindetii。在消化腺,地幔肌和脑的视光瓣中测量Hg浓度。消化腺和地幔是具有最浓缩的Hg组织,其中所有物种(高达1.50μg.g〜(-1)DW)除外。 Cirrhosa。这种底栖骨盆在大脑中具有1.3倍的Hg浓度(高达1.89μg.g〜(-1)dw),而其他物种在大脑中具有2倍的较低浓度,而不是在地幔中的脑部。可以从给定物种的肌肉-HG浓度预测脑-Hg浓度,这有助于评估脑脊液中HG毒性动脉管性。在最污染的E.Cirrhosa个体中,使用高能 - 分辨率X射线吸收(HR XANES)光谱法测定其消化腺中的Hg中的化学形式的Hg。在消化腺体中,33±11%的总Hg是无机Hg,如单酸酯酸盐络合物(Hg(Cys)_2)。这表明膳食MEHG的去甲基化发生在该器官中。在地幔肌和视神经裂片中发现的所有HG均为甲基化并结合到一个半胱氨酸(Mehgcys络合物),这意味着饮食MeHg通过血液分配给这些组织。这些结果提出了关于HG脑浓度观察到的间隙差异的问题以及Hg对Cephalopod功能性脑可塑性和行为的可能影响。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|143907.1-143907.9|共9页
  • 作者单位

    Littoral Environnement et Societes (UENSs) UMR 7266 CNRS - La Rochelle Universite 2 rue Olympe de Gouges 17000 La Rochelle France;

    Univ Grenoble Alpes ISTerre CNRS CS 40700 38058 Grenoble France;

    Littoral Environnement et Societes (UENSs) UMR 7266 CNRS - La Rochelle Universite 2 rue Olympe de Gouges 17000 La Rochelle France;

    Littoral Environnement et Societes (UENSs) UMR 7266 CNRS - La Rochelle Universite 2 rue Olympe de Gouges 17000 La Rochelle France;

    Littoral Environnement et Societes (UENSs) UMR 7266 CNRS - La Rochelle Universite 2 rue Olympe de Gouges 17000 La Rochelle France;

    Littoral Environnement et Societes (UENSs) UMR 7266 CNRS - La Rochelle Universite 2 rue Olympe de Gouges 17000 La Rochelle France;

    Littoral Environnement et Societes (UENSs) UMR 7266 CNRS - La Rochelle Universite 2 rue Olympe de Gouges 17000 La Rochelle France Universire des Sciences et des Technologies de Hanoie (USTH) 18 Hoang Quoc Viet Nghia Do Cau Giay Hi Noi Viet Nam;

    Centre d'Etudes Biologiques de Chize (CEBC) UMR 7372 CNRS - La Rochelle Universite 5 Allies de l'Ocean 17000 La Rochelle France Observatoire PELAGIS UMS 3462 CNRS -La Rochelle Universite 5 Allees de l'Ocean 17000 La Rochelle France;

    Littoral Environnement et Societes (UENSs) UMR 7266 CNRS - La Rochelle Universite 2 rue Olympe de Gouges 17000 La Rochelle France Institut Universitaire de France (IUF) 1 rue Descartes 75005 Paris France;

    Littoral Environnement et Societes (UENSs) UMR 7266 CNRS - La Rochelle Universite 2 rue Olympe de Gouges 17000 La Rochelle France;

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

    Organotropism; Mantle muscle; Digestive gland; Optic lobes; MethylHg; Speciation; HR-XANES;

    机译:有机脱发;地幔肌;消化腺;光泽;甲基;形态;hr-xanes.;

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