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敌草快及其代谢产物对斑马鱼(Danio rerio)的水生毒性比较。

Comparison of the aquatic toxicity of diquat and its metabolites to zebrafish Danio rerio.

作者信息

Shi Lanxin, Wang Xinru, Dai Yaoyao, Zhou Wendong, Wu Shenggan, Shao Bo, Nabanoga Gorettie Nsubuga, Ji Chenyang, Zhao Meirong

机构信息

Key Laboratory of Pollution Exposure and Health Intervention of Zhejiang Province, Interdisciplinary Research Academy, Zhejiang Shuren University, Hangzhou, 310015, People's Republic of China.

College of Biological and Environmental Engineering, Zhejiang Shuren University, Hangzhou, 310015, People's Republic of China.

出版信息

Sci Rep. 2024 Dec 28;14(1):31358. doi: 10.1038/s41598-024-82905-7.

Abstract

Diquat (DQ) is a non-selective, fast-acting herbicide that is extensively used in aquatic systems. DQ has been registered as the substitute for paraquat due to its lower toxicity. However, the widespread presence of DQ in aquatic systems can pose an ecological burden on aquatic organisms. In addition, DQ can degrade into its metabolites, diquat-monopyridone (DQ-M) and diquat-dipyridone (DQ-D) in the environment, while the ecological risks of the metabolites remain uncertain. Herein, the aquatic ecological risks of DQ and its metabolites were compared using zebrafish as model non-target organisms. Results indicated that DQ and its metabolites did not induce significant acute toxicity to zebrafish embryos at environmentally relevant levels. However, exposure to DQ and DQ-D resulted in oxidative stress in zebrafish larvae. DQ treatment led to increased levels of reactive oxygen species (ROS), malondialdehyde (MDA), and glutathione (GSH) in the larvae, while DQ-D increased internal MDA and GSH levels. Moreover, the activities of the antioxidative enzymes, superoxide dismutase (SOD) and catalase (CAT) were significantly suppressed by DQ and DQ-D. Besides, the expression levels of oxidative stress-related genes (Mn-SOD, CAT, and GPX) were disturbed accordingly after DQ and DQ-D treatments. These findings highlighted the importance of a more comprehensive understanding of the ecological risks of agrochemical substitutions as well as agrochemical metabolites. Such knowledge is crucial for significant improvements in agrochemical regulation and policy-making in the future.

摘要

敌草快(DQ)是一种非选择性、速效除草剂,广泛应用于水生系统。由于其毒性较低,敌草快已被注册为百草枯的替代品。然而,敌草快在水生系统中的广泛存在可能会给水生生物带来生态负担。此外,敌草快在环境中可降解为其代谢产物敌草快单吡啶酮(DQ-M)和敌草快双吡啶酮(DQ-D),而这些代谢产物的生态风险仍不确定。在此,以斑马鱼作为非靶标生物模型,比较了敌草快及其代谢产物的水生生态风险。结果表明,在环境相关浓度下,敌草快及其代谢产物对斑马鱼胚胎未诱导出显著的急性毒性。然而,暴露于敌草快和敌草快双吡啶酮会导致斑马鱼幼鱼产生氧化应激。敌草快处理导致幼鱼体内活性氧(ROS)、丙二醛(MDA)和谷胱甘肽(GSH)水平升高,而敌草快双吡啶酮则增加了幼鱼体内MDA和GSH水平。此外,抗氧化酶超氧化物歧化酶(SOD)和过氧化氢酶(CAT)的活性被敌草快和敌草快双吡啶酮显著抑制。此外,敌草快和敌草快双吡啶酮处理后,氧化应激相关基因(Mn-SOD、CAT和GPX)的表达水平也相应受到干扰。这些发现凸显了更全面了解农用化学品替代品及其代谢产物生态风险的重要性。此类知识对于未来农用化学品监管和政策制定的重大改进至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54b2/11682118/c6ffca5d2519/41598_2024_82905_Fig1_HTML.jpg

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