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毒死蜱的环境影响:对水生生物的跨代毒性效应不容忽视。

Environmental impacts of chlorpyrifos: Transgenerational toxic effects on aquatic organisms cannot be ignored.

作者信息

Ma Junguo, Zhu Penglin, Wang Wenhua, Zhang Xiaodan, Wang Panliang, Sultan Yousef, Li Yuanyuan, Ding Weikai, Li Xiaoyu

机构信息

College of Life Science, Henan Normal University, Xinxiang, Henan 453007, China.

College of Life Science, Henan Normal University, Xinxiang, Henan 453007, China.

出版信息

Sci Total Environ. 2023 Dec 20;905:167311. doi: 10.1016/j.scitotenv.2023.167311. Epub 2023 Sep 22.

Abstract

Chlorpyrifos (CPF) has been extensively used in the world and frequently found in natural environments, might cause a range of environmental issues and pose a health risk to aquatic species. However, investigation of its toxic effects on offspring after parental exposure has been neglected, especially for aquatic organisms such as fish. In the current study, the effects of chronic CPF exposure (3 and 60 μg/L) on adult zebrafish (F0) was investigated to determine its influence on adult reproductive capacity and offspring (F1 and F2). The results showed the existence of CPF both in F0 ovaries and F1 embryos and larvae, indicating that CPF could be transferred directly from the F0 adult fish to F1 offspring. After 90 d exposure, we observed that F0 female fish showed increased proportion of perinucleolar oocyte in the ovaries, decreased proportion of mature oocyte, and decreased egg production, but not in F1 adult. The transcriptomic analysis revealed that the disruption of metabolism during oocyte maturation in the CPF treatment zebrafish might interfere with F0 oocytes development and quality and ultimately influence offspring survival. For the larvae, the parental CPF exposure distinctly inhibited heart rate at 72 and 120 hpf and increased the mortality of F1 but not F2 larvae. The changes of biochemical indicators confirmed a disturbance in the oxidative balance, induced inflammatory reaction and apoptosis in F1 larvae. Furthermore, the changing profiles of mRNA revealed by RNA-seq confirmed an increased susceptibility in F1 larvae and figured out potential disruptions of ROS metabolism, immune system, apoptosis, and metabolism pathways. Taken together, these results show that chronic CPF treatment can induce reproductive toxicity, and parental transfer of CPF occurs in fish, resulting in transgenerational alters in F1 generation survival and transcription that raising concerns on the ecological risk of CPF in the natural environment.

摘要

毒死蜱(CPF)在全球被广泛使用,且在自然环境中频繁被检测到,它可能引发一系列环境问题,并对水生物种构成健康风险。然而,关于亲代暴露后其对后代的毒性影响的研究一直被忽视,尤其是对于鱼类等水生生物。在本研究中,我们探究了慢性毒死蜱暴露(3和60μg/L)对成年斑马鱼(F0)的影响,以确定其对成年鱼生殖能力及后代(F1和F2)的影响。结果显示,F0卵巢以及F1胚胎和幼体中均存在毒死蜱,这表明毒死蜱能够直接从F0成年鱼转移至F1后代。暴露90天后,我们观察到F0雌鱼卵巢中核仁周边卵母细胞比例增加,成熟卵母细胞比例降低,产卵量减少,但F1成年鱼未出现此现象。转录组分析表明,毒死蜱处理的斑马鱼卵母细胞成熟过程中的代谢紊乱可能会干扰F0卵母细胞的发育和质量,最终影响后代的存活。对于幼体而言,亲代毒死蜱暴露显著抑制了72和120 hpf时的心率,并增加了F1幼体的死亡率,但对F2幼体没有影响。生化指标的变化证实了F1幼体氧化平衡受到干扰,引发了炎症反应和细胞凋亡。此外,RNA-seq揭示的mRNA变化图谱证实了F1幼体易感性增加,并明确了活性氧代谢、免疫系统、细胞凋亡和代谢途径的潜在干扰。综上所述,这些结果表明,慢性毒死蜱处理可诱导生殖毒性,且毒死蜱在鱼类中存在亲代转移现象,导致F1代存活和转录的跨代改变,这引发了人们对自然环境中毒死蜱生态风险的担忧。

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