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Bisphenol A interferes with first shell formation and development of the serotoninergic system in early larval stages of Mytilus galloprovincialis

机译:双酚A干扰了贻油早期幼虫incinialis的幼虫阶段的第一次壳体形成和发育

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摘要

Bisphenol A-BPA, a widespread plastic additive, is an emerging contaminant of high concern and a potential endocrine disruptor in mammals. BPA also represents a potential threat for aquatic species, especially for larval stages. In the marine bivalve Mytilus galloprovincialis, BPA has been previously shown to affect early larval development and gene transcription. In this work, the effects of BPA (0.05-0.5-5 μM) were further investigated at different times post fertilization (24-28-32-48 hpf). BPA induced concentration-dependent alterations in deposition of the organic matrix and calcified shell at different larval stages, as shown by double calcofluor/ calcein staining, resulting in altered phenotypes at 48hpf. Transcription of Tyrosinase-TYR, that plays a key role in remodelling of the shell organic matrix, and of HOX1, a member of homeobox genes involved in larval shell formation and neurogenesis, were evaluated by In Situ Hybrydization-ISH. BPA altered the spatial pattern of expression of both genes, with distinct effects depending on the concentration and developmental stage. Moreover, BPAaffected the time course of mRNA levels for TYR from 24 to 48hpf. BPA impaired development of serotonin-5-HT-immunoreactive neurons at different times pf; at 48hpf, the reduction in the number of serotoninergic neurons was associated with developmental delay and downregulation of the 5-HT receptor-5-HTR. All the effects were observed from the lowest concentration tested, corresponding to detectable BPA levels in contaminated coastal waters. These data demonstrate that BPA interferes with key processes occurring during the first developmental stages of mussels, thus representing a potential threat for natural populations.
机译:双酚A-BPA是一种广泛的塑料添加剂,是哺乳动物中高关注的新兴污染物和潜在的内分泌干扰。 BPA也代表了水生物种的潜在威胁,特别是对于幼虫阶段。在海洋双胞盆植物植物嗜宫内节育脉中,BPA先前已经显示出影响早期幼虫发育和基因转录。在这项工作中,在施肥后的不同时间进一步研究了BPA(0.05-0.5-5μm)的效果(24-28-32-48 HPF)。 BPA在不同幼虫阶段沉积有机基质和钙化壳的浓度依赖性改变,如双重钙荧光/钙素染色所示,导致48HPF的改变表型。通过原位hybrydization评估酪氨酸有机基质重塑中的重塑作用的酪氨酸酶-TYR的转录,其在壳体有机基质的重塑中作用,以及幼虫壳形成和神经发生的成员,得到了原位hybrydization-ish。 BPA改变了两种基因表达的空间模式,这取决于浓度和发育阶段的不同效果。此外,将MRNA水平的时间过程BPA多久从24〜48HPF到48HPF。 BPA在不同时间PF的血清素-5-HT-免疫反应神经元的发育受损;在48HPF时,血清奈诺里尼神经元的数量的减少与5-HT受体-5-HTR的发育延迟和下调有关。从测试的最低浓度观察到所有效果,对应于受污染的沿海水域中可检测的BPA水平。这些数据表明,BPA干扰了在贻贝的第一次发展阶段发生的关键过程,从而代表了对自然群体的潜在威胁。

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  • 来源
    《Science of the total environment》 |2021年第1期|144003.1-144003.11|共11页
  • 作者单位

    Dipanimento di Scienze della Terra dell'Ambiente e della Vita DISTAV Universtia di Cenova Corso Europa 26 16132 Genova Italy Laboratoire de Biologie du Developpement de Villefranche-sur-mer Insn'tut de la mer Sorbonne Universite CNRS 181 Chemin du Lazaret 06230 Villefranche-sur-mer France;

    Dipanimento di Scienze della Terra dell'Ambiente e della Vita DISTAV Universtia di Cenova Corso Europa 26 16132 Genova Italy;

    Laboratoire de Biologie du Developpement de Villefranche-sur-mer Insn'tut de la mer Sorbonne Universite CNRS 181 Chemin du Lazaret 06230 Villefranche-sur-mer France;

    Laboratoire de Biologie du Developpement de Villefranche-sur-mer Insn'tut de la mer Sorbonne Universite CNRS 181 Chemin du Lazaret 06230 Villefranche-sur-mer France;

    Dipanimento di Scienze della Terra dell'Ambiente e della Vita DISTAV Universtia di Cenova Corso Europa 26 16132 Genova Italy;

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

    Bisphenol A; Mussel; Early development; Shell formation; Tyrosinase; hoxl; Serotonin;

    机译:双酚A;蚌;早期发展;壳体形成;酪氨酸酶;Hoxl;血清仁;

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