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Disruptions in aromatase expression in the brain, reproductive behavior, and secondary sexual characteristics in male guppies (Poecilia reticulata) induced by tributyltin

机译:三丁基锡诱导的雄性孔雀鱼(Poecilia reticulata)大脑中芳香酶表达的破坏,生殖行为和次要性特征

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Although bioaccumulation of tributyltin (TBT) in fish has been confirmed, information on possible effects of TBT on reproductive system of fish is still relatively scarce, particularly at environmentally relevant levels. To evaluate the adverse effects and intrinsic toxicological properties of TBT in male fish, we studied aromatase gene expression in the brain, sex steroid contents, primary and secondary sexual characteristics, and reproductive behavior in male guppies (Poecilia reticulata) exposed to tributyltin chloride at the nominal concentrations of 5, 50, and 500 ng/L for 28 days in a semi-static exposure system. Radioimmunoassay demonstrated that treatment with 50 ng/L TBT caused an increase in systemic levels of testosterone of male guppies. Gonopodial index, which showed a positive correlation with testosterone levels, was elevated in the 5 ng/L and 50 ng/L TBT treated groups. Real-time PCR revealed that TBT exposure had inhibiting effects on expression of two isoforms of guppy aromatase in the brain, and these changes at the molecular levels were associated with a disturbance of reproductive behavior of the individuals, as measured by decreases in frequencies of posturing, sigmoid display, and chase activities when males were paired with females. This study provides the first evidence that TBT can cause abnormalities of secondary sexual characteristics in teleosts and that suppression of reproductive behavior in teleosts by TBT is due to its endocrine-disrupting action as an aromatase inhibitor targeting the nervous system. (C) 2015 Elsevier B.V. All rights reserved.
机译:尽管已证实鱼类中三丁基锡(TBT)的生物富集,但有关TBT对鱼类生殖系统可能产生的影响的信息仍然相对匮乏,尤其是在与环境相关的水平上。为了评估TBT对雄鱼的不利影响和内在的毒理学特性,我们研究了在大脑中暴露于氯化三丁基锡的雄性孔雀鱼(Poecilia reticulata)在大脑中的芳香化酶基因表达,性类固醇含量,主要和次要性特征以及生殖行为。在半静态暴露系统中28天的标称浓度为5、50和500 ng / L。放射免疫分析表明,用50 ng / L TBT进行治疗可导致雄性孔雀鱼体内睾丸激素水平升高。在5 ng / L和50 ng / L的TBT处理组中,与睾丸激素水平呈正相关的淋菌足指数升高。实时PCR显示,TBT暴露对大脑中孔雀鱼芳香化酶的两种同工型的表达具有抑制作用,而这些分子水平的变化与个体生殖行为的紊乱有关,如姿势频率的降低所衡量。雄性与雌性配对时的,乙状结肠显示和追逐活动。这项研究提供了第一个证据,即TBT可以导致硬骨鱼的继发性特征异常,而TBT抑制硬骨鱼的生殖行为是由于其作为针对神经系统的芳香酶抑制剂的内分泌干扰作用。 (C)2015 Elsevier B.V.保留所有权利。

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