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氰氟草酯暴露会导致斑马鱼胚胎出现严重的肝毒性和免疫毒性。

Cyhalofop-butyl exposure induces the severe hepatotoxicity and immunotoxicity in zebrafish embryos.

作者信息

Xiong Guanghua, Hu Hongmei, Zhang Haiyan, Zhang Jun'e, Cao Zigang, Lu Huiqiang, Liao Xinjun

机构信息

College of Biology and Food Engineering, Key Laboratory of Embryo Development and Reproductive Regulation of Anhui Province, Fuyang Normal University, Fuyang, 236041, Anhui, China; College of Life Sciences, Jiangxi Key Laboratory of Developmental Biology of Organs, Jinggangshan University, Ji'an, 343009, Jiangxi, China.

College of Life Sciences, Jiangxi Key Laboratory of Developmental Biology of Organs, Jinggangshan University, Ji'an, 343009, Jiangxi, China.

出版信息

Fish Shellfish Immunol. 2023 Mar;134:108644. doi: 10.1016/j.fsi.2023.108644. Epub 2023 Feb 25.

Abstract

Cyhalofop-butyl (CyB) is a highly effective herbicide and is widely used for weed control in paddy fields. Because CyB is easily residual in the aquatic environment, its potential harm to aquatic organisms has attracted much attention and has not been fully understood. In this study, we systematically explored the hepatotoxic and immunotoxic effects of CyB exposure in zebrafish embryos. Firstly, CyB induced a decrease in the survival rate of zebrafish and led to a series of developmental abnormalities. Meanwhile, CyB can significantly reduce the size of zebrafish liver tissue and the number of hepatocytes in a dose-dependent manner. Secondly, the number of macrophages and neutrophils significantly decreased but the antioxidant enzyme activities such as CAT and MDA were greatly elevated upon CyB exposure. Thirdly, RNA-Seq analysis identified 1, 402 differentially expressed genes (DEGs) including 621 up-regulated and 781 down-regulated in zebrafish embryos after CyB exposure. KEGG and GO functional analysis revealed that the metabolic pathways of drug metabolism-cytochrome P450, biosynthesis of antibiotics, and metabolism of xenobiotics, along with oxidation-reduction process, high-density lipoprotein particle and cholesterol transport activity were significantly enriched after CyB exposure. Besides, hierarchical clustering analysis suggested that the genes involved in lipid metabolism, oxidative stress and innate immunity were largely activated in CyB-exposed zebrafish. Moreover, CyB induced zebrafish liver injury and increased hepatocyte apoptosis, which increased the protein expression levels of Bax, TLR4, NF-kB p65 and STAT3 in zebrafish. Finally, specific inhibition of TLR signaling pathway by TLR4 knock-down could significantly reduce the expression of inflammatory cytokines induced by CyB exposure. Taken together, these informations demonstrated that CyB could induce the hepatotoxicity and immunotoxicity in zebrafish embryos, and the expression levels of many genes involved in lipid metabolism and immune inflammation were obtained by RNA-Seq analysis. This study provides valuable information for future elucidating the aquatic toxicity of herbicide in aquatic ecosystems.

摘要

氰氟草酯(CyB)是一种高效除草剂,广泛用于稻田除草。由于CyB易在水生环境中残留,其对水生生物的潜在危害备受关注且尚未完全明确。在本研究中,我们系统地探究了CyB暴露对斑马鱼胚胎的肝毒性和免疫毒性作用。首先,CyB导致斑马鱼存活率降低,并引发一系列发育异常。同时,CyB能以剂量依赖的方式显著减小斑马鱼肝脏组织的大小和肝细胞数量。其次,CyB暴露后巨噬细胞和中性粒细胞数量显著减少,但抗氧化酶如CAT和MDA的活性大幅升高。第三,RNA测序分析鉴定出1402个差异表达基因(DEG),其中CyB暴露后的斑马鱼胚胎中有621个上调和781个下调。KEGG和GO功能分析表明,药物代谢 - 细胞色素P450、抗生素生物合成、异生物代谢途径以及氧化还原过程、高密度脂蛋白颗粒和胆固醇转运活性在CyB暴露后显著富集。此外,层次聚类分析表明,参与脂质代谢、氧化应激和先天免疫的基因在CyB暴露的斑马鱼中大量被激活。而且,CyB诱导斑马鱼肝脏损伤并增加肝细胞凋亡,这增加了斑马鱼中Bax、TLR4、NF - kB p65和STAT3的蛋白表达水平。最后,通过敲低TLR4特异性抑制TLR信号通路可显著降低CyB暴露诱导的炎症细胞因子表达。综上所述,这些信息表明CyB可诱导斑马鱼胚胎的肝毒性和免疫毒性,并且通过RNA测序分析获得了许多参与脂质代谢和免疫炎症的基因表达水平。本研究为未来阐明除草剂在水生生态系统中的水生毒性提供了有价值的信息。

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