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首页> 外文期刊>Ecotoxicology and Environmental Safety >Isolated and mixed effects of diuron and its metabolites on biotransformation enzymes and oxidative stress response of Nile tilapia (Oreochromis niloticus)
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Isolated and mixed effects of diuron and its metabolites on biotransformation enzymes and oxidative stress response of Nile tilapia (Oreochromis niloticus)

机译:敌草隆及其代谢产物对尼罗罗非鱼生物转化酶和氧化应激反应的分离和混合作用

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摘要

Diuron is one of the most used herbicide in the world, and its field application has been particularly increased in Brazil due to the expansion of sugarcane crops. Diuron has often been detected in freshwater ecosystems and it can be biodegraded into three main metabolites in the environment, the 3,4-dichloroaniline (DCA), 3,4-dichlorophenylurea (DCPU) and 3,4-dichlorophenyl-N-methylurea (DCPMU). Negative effects under aquatic biota are still not well established for diuron, especially when considering its presence in mixture with its different metabolites. In this study, we evaluated the effects of diuron alone or in combination with its metabolites, DCPMU, DCPU and 3,4-DCA on biochemical stress responses and biotransformation activity of the fish Oreochromis niloticus. Results showed that diuron and its metabolites caused significant but dispersed alterations in oxidative stress markers and biotransformation enzymes, except for ethoxyresorufin-O-deethylase (EROD) activity, that presented a dose-dependent increase after exposure to either diuron or its metabolites. Glutathione S-transferase (GST) activity was significant lower in gills after exposure to diuron metabolites, but not diuron. Diuron, DCPMU and DCA also decreased the multixenobiotic resistance (MXR) activity. Lipid peroxidation levels were increased in gill after exposure to all compounds, indicating that the original compound and diuron metabolites can induce oxidative stress in fish. The integration of all biochemical responses by the Integrated Biomarker Response (IBR) model indicated that all compounds caused significant alterations in O. niloticus, but DCPMU caused the higher alterations in both liver and gill. Our findings imply that diuron and its metabolites may impair the physiological response related to biotransformation and antioxidant activity in fish at field concentrations. Such alterations could interfere with the ability of aquatic animals to adapt to environments contaminated by agriculture.
机译:Diuron是世界上使用最广泛的除草剂之一,由于甘蔗作物的扩大,其在田间的应用在巴西特别增加。敌草隆经常在淡水生态系统中被检测到,并且可以被生物降解为环境中的三种主要代谢产物,即3,4-二氯苯胺(DCA),3,4-二氯苯基脲(DCPU)和3,4-二氯苯基-N-甲基脲( DCPMU)。在水生生物区系中,对敌草隆的负面影响仍未完全确定,尤其是考虑到其与不同代谢物混合存在时。在这项研究中,我们评估了敌草隆单独或与它的代谢物,DCPMU,DCPU和3,4-DCA结合使用对鱼类Oreochromis niloticus的生化应激反应和生物转化活性的影响。结果表明,除乙氧基异佛手菌素-O-脱乙基酶(EROD)活性外,敌草隆及其代谢产物在暴露于敌草隆或其代谢产物后呈剂量依赖性增加,但引起氧化应激标记物和生物转化酶的显着但分散的变化。暴露于敌草隆代谢产物而不是敌草隆后,g中的谷胱甘肽S-转移酶(GST)活性显着降低。 Diuron,DCPMU和DCA也降低了多异生物抗性(MXR)活性。暴露于所有化合物后,g中的脂质过氧化水平增加,这表明原始化合物和杜隆代谢物可诱导鱼的氧化应激。通过综合生物标记反应(IBR)模型对所有生化反应的整合表明,所有化合物均会引起尼罗罗非鱼的显着变化,而DCPMU则引起肝脏和腮的更高变化。我们的发现表明,在田间浓度下,敌草隆及其代谢产物可能会损害与鱼类生物转化和抗氧化活性有关的生理反应。这种改变可能会干扰水生动物适应农业污染环境的能力。

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