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草甘膦对斑马鱼(Danio rerio)发育毒性的影响。

Effects of Glyphosate on Zebrafish (Danio rerio) Developmental Toxicity.

作者信息

Zhou Ning, Li Ruirui, Lu Jin, Cheng Jiagao, Xu Wenping, Tao Liming, Zhang Yang

机构信息

Shanghai Key Laboratory of Chemical Biology, School of Pharmacy, East China University of Science and Technology, Shanghai, China.

Frog Prince (Fujian) Baby & Child Care Product Co. Ltd., Lantian Economical Development Zone, Zhangzhou, Fujian, China.

出版信息

Environ Toxicol. 2025 Sep;40(9):1160-1172. doi: 10.1002/tox.24503. Epub 2025 Apr 2.

Abstract

Glyphosate has been widely used in agricultural production as a highly effective, low-toxic, broad-spectrum organophosphorus herbicide. However, there has been controversy about whether it is toxic to the nervous system. In order to explore this issue in depth, the present study analyzed the molecular mechanism of action of glyphosate from four perspectives, namely, gene regulation, protein expression, morphological changes, and behavioral changes, and assessed the potential effects of glyphosate on the development of the nervous system of zebrafish through the establishment of a zebrafish model. The results showed that zebrafish embryos at 6 hpf after fertilization were exposed to glyphosate until 72 and 120 hpf. After exposure, it was found that the central nervous development-related gene Elavl3 was down-regulated, and GAP-43, Neurog1, and GFAP were up-regulated. The expression of HuC protein, which is used to maintain neuronal axonal homeostasis, was significantly reduced, and the expression of GFAP protein, which is used to repair neurological damage and inflammation, was significantly increased. Under the regulation of related genes and proteins, zebrafish larvae show abnormal changes during the development of a series of nervous systems such as heart rate slowing, somite shortening, spinal and brain malformations. At the same time, the zebrafish's action behavior also changed, with a significant decrease in its total time share in the low-speed shift and high-speed shift states, and a delayed response to dark-light environmental stimuli. In summary, studies have shown that glyphosate exposure may induce damage and inflammation of the zebrafish nervous system, resulting in developmental malformations, abnormal motor behavior, and potential neurotoxicity. Therefore, the possible neurotoxicity and environmental risks of glyphosate to aquatic animals should not be ignored and should be of great concern.

摘要

草甘膦作为一种高效、低毒、广谱的有机磷除草剂,已在农业生产中广泛使用。然而,其是否对神经系统有毒性一直存在争议。为深入探讨这一问题,本研究从基因调控、蛋白质表达、形态变化和行为变化四个角度分析了草甘膦的作用分子机制,并通过建立斑马鱼模型评估了草甘膦对斑马鱼神经系统发育的潜在影响。结果显示,受精后6小时的斑马鱼胚胎暴露于草甘膦中直至72和120小时。暴露后发现,与中枢神经发育相关的基因Elavl3表达下调,而GAP - 43、Neurog1和GFAP表达上调。用于维持神经元轴突稳态的HuC蛋白表达显著降低,用于修复神经损伤和炎症的GFAP蛋白表达显著增加。在相关基因和蛋白质的调控下,斑马鱼幼体在一系列神经系统发育过程中出现异常变化,如心率减慢、体节缩短、脊柱和脑部畸形。同时,斑马鱼的行为动作也发生了变化,其在低速游动和高速游动状态下的总时间占比显著降低,对明暗环境刺激的反应延迟。综上所述,研究表明草甘膦暴露可能诱导斑马鱼神经系统损伤和炎症,导致发育畸形、运动行为异常以及潜在的神经毒性。因此,草甘膦对水生动物可能存在的神经毒性和环境风险不容忽视,应予以高度关注。

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