Qin Yingju, Wang Xiaohong, Yan Xiliang, Zhu Di, Wang Jia, Chen Siying, Wang Shuo, Wen Yang, Martyniuk Christopher J, Zhao Yuanhui
Key Laboratory for Water Quality and Conservation of the Pearl River Delta, Ministry of Education, Guangzhou University, Guangzhou 510006, China; Institute of Environmental Research at Greater Bay Area, Ministry of Education, Guangzhou University, Guangzhou 510006, China.
Key Laboratory for Water Quality and Conservation of the Pearl River Delta, Ministry of Education, Guangzhou University, Guangzhou 510006, China; Institute of Environmental Research at Greater Bay Area, Ministry of Education, Guangzhou University, Guangzhou 510006, China.
Toxicology. 2022 Mar 30;470:153137. doi: 10.1016/j.tox.2022.153137. Epub 2022 Feb 24.
Triazole fungicides are used to control the disease of cereal crops but may also cause adverse effects on non-target organisms. There is a lack of toxicity data for some triazoles such as fenbuconazole in aquatic organisms. This research was conducted to evaluate the toxicity of fenbuconazole at environmentally relevant concentrations with attention on the mitochondria, antioxidant system, and locomotor activity in zebrafish. Zebrafish were exposed to one concentration of 5, 50, 200 or 500 ng/L fenbuconazole for 96 h. There was no effect on survival nor percentage of fish hatched, but exposure to 200 and 500 ng/L fenbuconazole resulted in malformation and hypoactivity in zebrafish. Oxygen consumption rates (OCR) of embryos were measured to determine if the fungicide impaired mitochondrial respiration. Exposure to 500 ng/L fenbuconazole reduced basal OCR and oligomycin-induced ATP linked respiration in exposed fish. Fenbuconazole reduced mitochondrial membrane potential and reduced the activities of mitochondrial Complex II and III. Transcript levels of both sdhc and cyc1, each related to Complex II and III, were also altered in expression by fenbuconazole exposure, consistent with mitochondrial dysfunction in embryos. Fenbuconazole activated the antioxidant system, based upon both transcriptional and enzymatic data in zebrafish. Consistent with mitochondrial impairment, molecular docking confirmed a strong binding capacity of the fungicide at the Q site of Complex III, revealing this complex is susceptible to fenbuconazole. This study reveals potential toxicity pathways related to fenbuconazole exposure in aquatic organisms; such data can improve risk assessments for triazole fungicides.
三唑类杀菌剂用于防治谷类作物病害,但也可能对非靶标生物产生不利影响。对于某些三唑类药物,如水生生物中的腈苯唑,缺乏毒性数据。本研究旨在评估腈苯唑在环境相关浓度下的毒性,重点关注斑马鱼的线粒体、抗氧化系统和运动活性。将斑马鱼暴露于5、50、200或500 ng/L的腈苯唑浓度下96小时。对存活率和孵化鱼的百分比没有影响,但暴露于200和500 ng/L的腈苯唑会导致斑马鱼畸形和活动减少。测量胚胎的耗氧率(OCR)以确定该杀菌剂是否会损害线粒体呼吸。暴露于500 ng/L的腈苯唑会降低暴露鱼的基础OCR和寡霉素诱导的ATP相关呼吸。腈苯唑降低了线粒体膜电位,并降低了线粒体复合物II和III的活性。与复合物II和III相关的sdhc和cyc1的转录水平也因腈苯唑暴露而在表达上发生改变,这与胚胎中的线粒体功能障碍一致。基于斑马鱼的转录和酶学数据,腈苯唑激活了抗氧化系统。与线粒体损伤一致,分子对接证实了该杀菌剂在复合物III的Q位点具有很强的结合能力,表明该复合物对腈苯唑敏感。本研究揭示了与水生生物中腈苯唑暴露相关的潜在毒性途径;这些数据可以改进三唑类杀菌剂的风险评估。