Wang Yanhua, Wu Shenggan, Chen Jine, Zhang Changpeng, Xu Zhenlan, Li Gang, Cai Leiming, Shen Weifeng, Wang Qiang
State Key Laboratory Breeding Base for Zhejiang Sustainable Pest and Disease Control, Key Laboratory for Pesticide Residue Detection of Ministry of Agriculture, Laboratory (Hangzhou) for Risk Assessment of Agricultural Products of Ministry of Agriculture, Institute of Quality and Standard for Agro-products, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, Zhejiang, China.
State Key Laboratory Breeding Base for Zhejiang Sustainable Pest and Disease Control, Key Laboratory for Pesticide Residue Detection of Ministry of Agriculture, Laboratory (Hangzhou) for Risk Assessment of Agricultural Products of Ministry of Agriculture, Institute of Quality and Standard for Agro-products, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, Zhejiang, China.
Chemosphere. 2018 Feb;192:14-23. doi: 10.1016/j.chemosphere.2017.10.129. Epub 2017 Oct 28.
Pesticides usually present in mixtures in surface waters, although they are traditionally regulated on an individual basis in aquatic ecosystems. In this study, we aimed to investigate the lethal and transcriptional responses of individual and combined pesticides (iprodione, pyrimethanil, pyraclostrobin and acetamiprid) on zebrafish (Danio rerio). Semi-static toxicity test indicated that the greatest toxicity to the four life stages (embryonic, larval, juvenile and adult stages) of D. rerio was detected from pyraclostrobin, followed by iprodione and pyrimethanil. In contrast, the lowest toxicity to the organisms was found from acetamiprid. Most of the selected pesticides exerted greater toxicities to D. rerio of embryonic stage compared with other life stages. Synergistic responses were observed from all binary mixtures of iprodione in combination with pyrimethanil or acetamiprid and ternary mixtures of iprodione+pyraclostrobin in combination with pyrimethanil or acetamiprid. The expressions of 16 genes related to cell apoptosis pathway, oxidative stress response, innate immunity and endocrine disruption at the mRNA level showed that zebrafish embryos were affected by the individual or combined pesticides. The expressions of P53, Tnf, TRβ, Tsh and Cyp19a exhibited greater changes upon exposure to combined pesticides compared with individual pesticides. Taken together, increased toxicity might be triggered by the simultaneous presence of several pesticides in the aquatic environment, which seriously damaged the non-target organisms.
农药通常以混合物的形式存在于地表水中,尽管传统上在水生生态系统中是对其进行单独监管的。在本研究中,我们旨在调查单一农药和复合农药(异菌脲、嘧霉胺、吡唑醚菌酯和啶虫脒)对斑马鱼(Danio rerio)的致死和转录反应。半静态毒性试验表明,对斑马鱼四个生命阶段(胚胎期、幼体期、幼鱼期和成鱼期)毒性最大的是吡唑醚菌酯,其次是异菌脲和嘧霉胺。相比之下,啶虫脒对生物的毒性最低。与其他生命阶段相比,大多数所选农药对胚胎期斑马鱼的毒性更大。观察到异菌脲与嘧霉胺或啶虫脒的所有二元混合物以及异菌脲 + 吡唑醚菌酯与嘧霉胺或啶虫脒的三元混合物均有协同反应。16个与细胞凋亡途径、氧化应激反应、先天免疫和内分泌干扰相关的基因在mRNA水平的表达表明,斑马鱼胚胎受到了单一农药或复合农药的影响。与单一农药相比,暴露于复合农药时P53、Tnf、TRβ、Tsh和Cyp19a的表达变化更大。综上所述,水环境中几种农药同时存在可能引发毒性增加,这严重损害了非靶标生物。