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环境相关浓度的 S-甲草氯及其两种代谢物影响斑马鱼胚胎的甲状腺代谢。

Environmentally relevant mixture of S-metolachlor and its two metabolites affects thyroid metabolism in zebrafish embryos.

机构信息

Masaryk University, Faculty of Science, RECETOX, Kamenice 753/5, 625 00 Brno, Czech Republic; University of Bordeaux, EPOC, UMR 5805, 33400 Talence, France.

Masaryk University, Faculty of Science, RECETOX, Kamenice 753/5, 625 00 Brno, Czech Republic.

出版信息

Aquat Toxicol. 2020 Apr;221:105444. doi: 10.1016/j.aquatox.2020.105444. Epub 2020 Feb 7.

Abstract

Herbicides and their metabolites are often detected in water bodies where they may cause adverse effects to non-target organisms. Their effects at environmentally relevant concentrations are often unclear, especially concerning mixtures of pesticides. This study thus investigated the impacts of one of the most used herbicides: S-metolachlor and its two metabolites, metolachlor oxanilic acid (MOA) and metolachlor ethanesulfonic acid (MESA) on the development of zebrafish embryos (Danio rerio). Embryos were exposed to the individual substances and their environmentally relevant mixture until 120 hpf (hours post-fertilization). The focus was set on sublethal endpoints such as malformations, hatching success, length of fish larvae, spontaneous movements, heart rate and locomotion. Moreover, expression levels of eight genes linked to the thyroid system disruption, oxidative stress defense, mitochondrial metabolism, regulation of cell cycle and retinoic acid (RA) signaling pathway were analyzed. Exposure to S-metolachlor (1 μg/L) and the pesticide mixture (1 μg/L of each substance) significantly reduced spontaneous tail movements of 21 hpf embryos. Few rare developmental malformations were observed, but only in larvae exposed to more than 100 μg/L of individual substances (craniofacial deformation, non-inflated gas bladder, yolk sac malabsorption) and to 30 μg/L of each substance in the pesticide mixture (spine deformation). No effect on hatching success, length of larvae, heart rate or larvae locomotion were found. Strong responses were detected at the molecular level including induction of p53 gene regulating the cell cycle (the pesticide mixture - 1 μg/L of each substance; MESA 30 μg/L; and MOA 100 μg/L), as induction of cyp26a1 gene encoding cytochrome P450 (pesticide mixture - 1 μg/L of each substance). Genes implicated in the thyroid system regulation (dio2, thra, thrb) were all overexpressed by the environmentally relevant concentrations of the pesticide mixture (1 μg/L of each substance) and MESA metabolite (1 μg/L). Zebrafish thyroid system disruption was revealed by the overexpressed genes, as well as by some related developmental malformations (mainly gas bladder and yolk sac abnormalities), and reduced spontaneous tail movements. Thus, the thyroid system disruption represents a likely hypothesis behind the effects caused by the low environmental concentrations of S-metolachlor, its two metabolites and their mixture.

摘要

除草剂及其代谢物经常在水体中被检测到,它们可能对非靶标生物产生不利影响。在环境相关浓度下,它们的影响往往不明确,尤其是对于混合农药而言。因此,本研究调查了最常用的除草剂之一:S-甲草氯及其两种代谢物甲草氯邻苯二甲酸(MOA)和甲草氯乙磺酸(MESA)对斑马鱼胚胎(Danio rerio)发育的影响。胚胎在个体物质及其环境相关混合物中暴露至 120 hpf(受精后小时)。重点放在亚致死终点上,如畸形、孵化成功率、鱼幼虫长度、自发运动、心率和运动。此外,还分析了与甲状腺系统紊乱、氧化应激防御、线粒体代谢、细胞周期调控和视黄酸(RA)信号通路相关的 8 个基因的表达水平。S-甲草氯(1μg/L)和农药混合物(每种物质 1μg/L)的暴露显著降低了 21 hpf 胚胎的自发尾部运动。仅在暴露于个体物质 100μg/L 以上(颅面畸形、未充气气囊、卵黄囊吸收不良)和每种物质 30μg/L 的混合物(脊柱畸形)的幼虫中观察到少数罕见的发育畸形。未发现孵化成功率、幼虫长度、心率或幼虫运动的影响。在分子水平上检测到强烈的反应,包括细胞周期调节基因 p53 的诱导(农药混合物-每种物质 1μg/L;MESA 30μg/L;MOA 100μg/L),以及编码细胞色素 P450 的基因 cyp26a1 的诱导(农药混合物-每种物质 1μg/L)。与甲状腺系统调节相关的基因(dio2、thra、thrb)均在农药混合物(每种物质 1μg/L)和 MESA 代谢物(1μg/L)的环境相关浓度下过度表达。甲状腺系统的破坏通过过度表达的基因以及一些相关的发育畸形(主要是气囊和卵黄囊异常)和自发尾部运动的减少来揭示。因此,甲状腺系统的破坏可能是 S-甲草氯、其两种代谢物及其混合物在低环境浓度下引起的影响的一个可能假设。

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