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首页> 外文期刊>Chemosphere >Effects of Hg sublethal exposure in the brain of peacock blennies Salaria pavo: Molecular, physiological and histopathological analysis
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Effects of Hg sublethal exposure in the brain of peacock blennies Salaria pavo: Molecular, physiological and histopathological analysis

机译:孔雀斑沙门氏菌脑中Hg亚致死暴露的影响:分子,生理和组织病理学分析

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摘要

Marine environments are affected by large amounts of toxicants among those mercury (Hg). The aim of this study was to assess potential neurotoxic effects of Hg in the peacock blenny Salaria pavo. A sublethal contamination to 66 jig HgCl2 L-1 over periods of 1, 4, 10 and 15 days was performed. Total Hg concentrations measured in the brain highlighted the detection of Hg at days 1 and 4 following the exposure but no concentration of the metal was further detected. Partial-length cDNA of genes coding ABC transporters (abcbl, abccl, abcc2, abcg2) and acetylcholinesterase (ache) were characterized. Results from mRNA expression levels displayed an up-regulation of abcbl mRNA while a down-regulation of abccl and abcc2 mRNA was observed. No change in abcg2 and ache mRNA expression was noted throughout the experiment. At each sampling time, Hg exposure did not affect the activity of the AChE enzyme. The histological analysis indicated that fish exhibited several damages in the optic tectum and the cerebellum and 3 reaction patterns were identified for each organ: circulatory disturbances, regressive and progressive changes. Molecular, physiological and histological biomarkers assessed in the present study highlighted that peacock blennies were able to detoxify Hg from the brain tissue by developing defense mechanisms. More globally, neurotoxic effects of a sublethal Hg exposure in the brain of peacock blennies and the adaptation capacity of this species were evaluated. (C) 2017 Elsevier Ltd. All rights reserved.
机译:海洋环境受到这些汞(Hg)中大量毒物的影响。这项研究的目的是评估汞对孔雀blenny Salaria pavo的潜在神经毒性作用。在1、4、10和15天的时间内对66夹具的HgCl2 L-1进行了亚致死性污染。在大脑中测得的总Hg浓度突出显示了暴露后第1天和第4天的Hg检测,但没有进一步检测到金属的浓度。表征了编码ABC转运蛋白(abcbl,abccl,abcc2,abcg2)和乙酰胆碱酯酶(ache)的基因的部分全长cDNA。来自mRNA表达水平的结果显示了abcbl mRNA的上调,而观察到了abccl和abcc2 mRNA的下调。在整个实验过程中,没有注意到abcg2和ache mRNA表达的变化。在每个采样时间,汞暴露均不会影响AChE酶的活性。组织学分析表明,鱼类在视神经顶盖和小脑中表现出几种损伤,并确定了每个器官的三种反应模式:循环障碍,渐进性和进行性变化。在本研究中评估的分子,生理和组织学生物标记物突显出,孔雀斑点能够通过建立防御机制从脑组织中解毒汞。在全球范围内,评估了孔雀绒毛脑中亚致死汞暴露的神经毒性作用以及该物种的适应能力。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2018年第2期|1094-1104|共11页
  • 作者单位

    Higher Inst Biotechnol Monastir, Bioressources Integrat Biol & Valuat BIOLIVAL, Ave Tahar Hadded,BP 74, Monastir 5000, Tunisia;

    Univ Namur, Res Unit Environm & Evolutionary Biol URBE, Rue Bruxelles 61, B-5000 Namur, Belgium;

    Univ Le Mans, CNRS, LUNAM, Mer Mol Sante,IUML FR 3473 EA2160, Le Mans, France;

    Fac Med, Lab Histol & Cytogenet, Res Unit Genet, Ave Avicenne, Monastir 5019, Tunisia;

    Univ Antwerp, Dept Biol, System Physiol & Ecotoxicol Res SPHERE, Groenenborgerlaan 171, B-2020 Antwerp, Belgium;

    Higher Inst Biotechnol Monastir, Bioressources Integrat Biol & Valuat BIOLIVAL, Ave Tahar Hadded,BP 74, Monastir 5000, Tunisia;

    Univ Le Mans, CNRS, LUNAM, Mer Mol Sante,IUML FR 3473 EA2160, Le Mans, France;

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

    HgCl2; Salaria pavo; Hg concentration; mRNA expression; AChE; Histopathology;

    机译:HgCl2;Salaria pavo;Hg浓度;mRNA表达;AChE;组织病理学;

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