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首页> 外文期刊>Science of the total environment >The insecticide permethrin induces transgenerational behavioral changes linked to transcriptomic and epigenetic alterations in zebrafish (Danio rerio)
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The insecticide permethrin induces transgenerational behavioral changes linked to transcriptomic and epigenetic alterations in zebrafish (Danio rerio)

机译:杀虫剂筛选诱导转基因行为变化与斑马鱼(Danio Rerio)中的转录组和表观遗传改变有关

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摘要

The pyrethroid insecticide permethrin is widely used for agricultural and domestic purposes. Previous data indicated that it acts as a developmental neurotoxicant and can induce transgenerational effects in non-target organisms. However, associated underlying mechanisms remain unclear. The aim of this study was to investigate permethrin-related transgenerational effects in the zebrafish model, and to identify possible molecular mechanisms underlying inheritance. Zebrafish (F0) were exposed to permethrin during early-life (2 h post-fertilization up to 28 days). The F1 and F2 offspring generations were obtained by pairing exposed F0 males and females, and were bred unexposed. Locomotor and anxiety behavior were investigated, together with transcriptomic and epigenomic (DNA methylation) changes in brains. Permethrin exposed F0 fish were hypoactive at adulthood, while males from the Fl and F2 generations showed a specific decrease in anxiety-like behavior. In F0, transcriptomic data showed enrichment in pathways related to glutamater-gic synapse activity, which may partly underlie the behavioral effects. In F1 and F2 males, dysregulation of similar pathways was observed, including a subset of differentially methylated regions that were inherited from the F0 to the F2 generation and indicated stable dysregulation of glutamatergic signaling. Altogether, the present results provide novel evidence on the transgenerational neurotoxic effects of permethrin, as well as mechanistic insight: a transient exposure induces persistent transcriptional and DNA methylation changes that may translate into transgenerational alteration of glutamatergic signaling and, thus, into behavioral alterations.
机译:拟除虫菊酯杀虫剂PEXTHRIN广泛用于农业和国内目的。以前的数据表明它充当发育神经毒剂,可以在非靶毒性生物中诱导转基因作用。但是,相关的潜在机制仍然不清楚。本研究的目的是调查斑马鱼模型中的丙滨相关的转基因效应,并识别遗产的可能的分子机制。在早期寿命期间暴露在斑马鱼(F0)(施用后2小时,高达28天)。通过配对暴露的F0雄性和女性获得F1和F2后代世代,并培育未曝光。研究了运动和焦虑行为,以及转录组和表观胶(DNA甲基化)的大脑中的变化。 PELETHRIN暴露的F0鱼在成年期脱卤,而来自FL和F2世代的雄性表现出焦虑的行为的特异性降低。在F0中,转录组数据显示与谷氨酸-GIC突触活动相关的途径,这可能部分地提出了行为效应。在F1和F2雄性中,观察到类似途径的失调,包括从F0遗传到F2生成的差异甲基化区域的子集,并表明谷氨酸胶信号传导的稳定性失衡。完全,目前的结果提供了关于PEX丙肽的转基因神经毒性作用的新迹证,以及机械洞察力:瞬态暴露会诱导持续转录和DNA甲基化变化,其可以转化为谷氨酸胶信号传导的转基因改变,因此转化为行为改变。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|146404.1-146404.11|共11页
  • 作者单位

    Man-Technology-Environment Research Centre (MTM) School of Science and Technology OErebro University Fakultetsgatan 1 S-70182 OErebro Sweden MARBEC University of Montpellier CNRS Ifremer IRD Palavas France Universite Paris-Saclay AgroParisTech INRAE GABI Domaine de Vilvert F-78350 Jouy-en-Josas France;

    Centre for Molecular Medicine Cologne University of Cologne 50931 Cologne Germany;

    MARBEC University of Montpellier CNRS Ifremer IRD Palavas France Universite Paris-Saclay AgroParisTech INRAE GABI Domaine de Vilvert F-78350 Jouy-en-Josas France;

    IHPE Univ. Montpellier CNRS Ifremer Univ. Perpignan Via Domitia Perpignan France;

    Man-Technology-Environment Research Centre (MTM) School of Science and Technology OErebro University Fakultetsgatnn 1 S-70182 OErebro Sweden Oerebro Life Science Centre School of Science and Technology Oerebro University Fakultetsgatan 1 S-70182 OErebro Sweden;

    Department of Organismal Biology Uppsala University Norbyv. 18A 75236 Uppsala Sweden;

    Man-Technology-Environment Research Centre (MTM) School of Science and Technology OErebro University Fakultetsgatnn 1 S-70182 OErebro Sweden;

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

    Transgenerational epigenetic inheritance; Developmental neurotoxicity; Glutamatergic signaling; DNA methylation; Pesticide;

    机译:转基因表观遗传遗传;发育性神经毒性;谷氨酸胶信号;DNA甲基化;农药;

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