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杀菌剂百菌清对胎生孔雀鱼(Poecilia vivipara)氧化应激、遗传毒性和精子质量生物标志物的影响。

Impacts of the biocide chlorothalonil on biomarkers of oxidative stress, genotoxicity, and sperm quality in guppy Poecilia vivipara.

机构信息

Programa de Pós-Graduação Em Biologia de Ambientes Aquáticos Continentais, Instituto de Ciências Biológicas, Universidade Federal Do Rio Grande, Av. Itália Km 8, CEP. 96203-900, Rio Grande, RS, Brazil.

Programa de Pós-Graduação Em Biologia de Ambientes Aquáticos Continentais, Instituto de Ciências Biológicas, Universidade Federal Do Rio Grande, Av. Itália Km 8, CEP. 96203-900, Rio Grande, RS, Brazil; Programa de Pós-Graduação Em Veterinária. Faculdade de Veterinária. Universidade Federal de Pelotas. Caixa Postal 354, CEP. 96001-970, Pelotas, RS, Brazil.

出版信息

Ecotoxicol Environ Saf. 2020 Jan 30;188:109847. doi: 10.1016/j.ecoenv.2019.109847. Epub 2019 Nov 12.

Abstract

Chlorothalonil is a fungicide present in antifouling paints and other formulations used in agriculture, although studies have shown this chemical to be toxic to fish species. To clarify the deleterious effects of chlorothalonil for these non-target organisms, the present study evaluated the toxic effects of this biocide for the estuarine guppy Poecilia vivipara in terms of an acute mortality test (96 h) and the analysis of biomarkers of oxidative stress, genotoxicity, and sperm quality. The LC calculated for P. vivipara was 40.8 μg/L of chlorothalonil. For the analysis of biomarkers, fish were exposed (96 h) to 1 and 10 μg/L of chlorothalonil. It was observed that chlorothalonil alters the levels of pro- and antioxidants towards oxidative stress. In the gills, a negative effect on total antioxidant capacity (ACAP) was detected, while there was a reduction in the activity of glutathione S-transferase (GST) in the liver. However, levels of glutathione (GSH) and the activity and glutamate-cysteine-ligase (GCL) increased in both tissues, as a possible detoxification response. Following chlorothalonil exposure, oxidative damage measured by lipoperoxidation (LPO) significantly increased at the cellular level only (red blood cells (RBCs) and sperm cells). An increase in fluidity of membranes, reactive oxygen species concentration and micronuclei (MNs) incidence were also seen in RBCs. In sperm cells, LPO increased, while membrane and mitochondrial functionality as well as sperm motility decreased. Based on these results, chlorothalonil can be considered as a toxic compound for fish, causing genotoxicity and affecting the RBCs physiology and the fertility of males of P. vivipara.

摘要

百菌清是一种存在于防污漆和其他用于农业的制剂中的杀菌剂,尽管研究表明这种化学物质对鱼类有毒。为了阐明百菌清对这些非靶标生物的有害影响,本研究评估了这种杀生物剂对河口孔雀鱼(Poecilia vivipara)的急性死亡率试验(96 小时)和氧化应激、遗传毒性和精子质量生物标志物分析的毒性作用。计算出的孔雀鱼 LC 为 40.8μg/L 的百菌清。对于生物标志物分析,将鱼暴露于 1 和 10μg/L 的百菌清中 96 小时。结果表明,百菌清改变了抗氧化应激的氧化还原平衡。在鳃中,检测到总抗氧化能力(ACAP)呈负效应,而肝脏中谷胱甘肽 S-转移酶(GST)活性降低。然而,在两种组织中,谷胱甘肽(GSH)水平以及谷氨酸-半胱氨酸连接酶(GCL)的活性均增加,这可能是一种解毒反应。在暴露于百菌清后,仅在细胞水平(红细胞(RBCs)和精子细胞)上测量的脂质过氧化(LPO)导致氧化损伤显著增加。还观察到 RBC 中膜流动性、活性氧浓度和微核(MN)发生率增加。在精子细胞中,LPO 增加,而膜和线粒体功能以及精子运动能力下降。根据这些结果,百菌清可被视为鱼类的有毒化合物,导致遗传毒性,并影响 RBC 生理学和 P. vivipara 雄性的生育能力。

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