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首页> 外文期刊>The Science of the Total Environment >The synthetic pyrethroid deltamethrin impairs zebrafish (Danio rerio) swim bladder development
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The synthetic pyrethroid deltamethrin impairs zebrafish (Danio rerio) swim bladder development

机译:合成的拟除虫菊酯溴氰菊酯会损害斑马鱼(Danio rerio)游泳膀胱的发育

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Deltamethrin (DM) is a widely used insecticide and reveals neural, cardiovascular and reproductive toxicity to various aquatic organisms. It has been known that DM negatively affects motion of zebrafish (Danio rerio). However, little is known in relation to the impacts of DM on development of swim bladder, which is a key organ for motion. In the present study, zebrafish embryos were exposed to 20 and 40 mu g/L DM. The changes of swim bladder morphology were observed and transcription levels of key genes were compared between DM treatments and the control. The results showed that DM treatments significantly blocked the formation of progenitor and tissue layers in swim bladder of zebrafish embryos, leading to failed inflation of swim bladder. Compared with the control, the key genes (pbx1, foxA3, mnx1, has2, anx-a5b, hprt1l and elovl1a) responsible for swim bladder development also showed decreased levels in response to DM treatments, suggesting that DM might specifically affect swim bladder development. Moreover, transcription levels of genes in the Wnt (wnt5b, tcf3a, wnt1, wnt9b, fzd1, fzd3 and fzd5) and Hedgehog (ihhb, ptc1 and ptc2) signaling pathways all decreased significantly in response to DM treatments, compared with the control. Considering the importance of Wnt and Hedgehog pathways in development of swim bladder, these results suggested that DM might affect swim bladder development through inhibiting the Wnt and Hedgehog pathways. Overall, the present study reported that swim bladder might be a potential target organ of DM toxicity in zebrafish, which contributed more information to the evaluation of DM's environmental risks. (C) 2019 Elsevier B.V. All rights reserved.
机译:溴氰菊酯(DM)是一种广泛使用的杀虫剂,对各种水生生物显示出神经,心血管和生殖毒性。众所周知,DM对斑马鱼(Danio rerio)的运动有负面影响。然而,关于DM对游泳囊发育的影响知之甚少,后者是运动的关键器官。在本研究中,斑马鱼胚胎暴露于20和40μg / L DM。观察了游泳膀胱形态的变化,并比较了DM治疗和对照组之间关键基因的转录水平。结果表明,DM处理可显着阻止斑马鱼胚胎游泳膀胱中祖细胞和组织层的形成,从而导致游泳膀胱充气失败。与对照组相比,负责游泳膀胱发育的关键基因(pbx1,foxA3,mnx1,has2,anx-a5b,hprt1l和elovl1a)对DM治疗的反应也降低了水平,这表明DM可能特异性地影响了游泳膀胱的发育。此外,与对照组相比,DM处理对Wnt(wnt5b,tcf3a,wnt1,wnt9b,fzd1,fzd3和fzd5)和Hedgehog(ihhb,ptc1和ptc2)信号通路中基因的转录水平均显着降低。考虑到Wnt和Hedgehog途径在游泳膀胱发育中的重要性,这些结果表明DM可能通过抑制Wnt和Hedgehog途径影响游泳膀胱的发育。总体而言,本研究报告说,游泳膀胱可能是斑马鱼中DM毒性的潜在靶器官,这为评估DM的环境风险提供了更多信息。 (C)2019 Elsevier B.V.保留所有权利。

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