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Combined toxicity of endosulfan and phenanthrene mixtures and induced molecular changes in adult Zebrafish (Danio rerio)

机译:硫丹和菲混合物的联合毒性和成年斑马鱼(Danio rerio)的诱导分子变化

摘要

Individual and combined toxicities of endosulfan (ENDO) with phenanthrene (PHE) were evaluated using zebrafish (Danio rerio) adults. The 96-h LC50 values for ENDO and PHE were 4.6 μg L−1 and 920 μg L−1, respectively. To evaluate the mixture toxicity, LC10 and LC50 concentrations were grouped into four combinations as ENDO-LC10 + PHE-LC10, ENDO-LC10 + PHE-LC50, ENDO-LC50 + PHE-LC10, and ENDO-LC50 + PHE-LC50, and their acute toxicities were determined. The combination of LC50-ENDO and LC10-PHE exhibited a synergistic effect. In addition, acetylcholinesterase activity decreased in zebrafish bodies exposed to ENDO with or without PHE. Combined treatments induced higher glutathione S-transferase activity compared to individual treatments. Carboxylesterase activity increased in both heads and bodies of ENDO-treated fishes compared with PHE-treated fishes. Using RT-qPCR technique, CYP1A gene expression significantly up-regulated in all combinations, whereas CYP3A was unchanged, suggesting that enzymes involved in defense may play different roles in the detoxification. CYP7A1 gene responsible for bile acid biosynthesis is dramatically down-regulated after exposure to the synergistic combination exposure, referring that the synergistic effect may be resulted from the reduction of bile production in zebrafishes. Among gender-related genes, CYP11A1 and CYP17A1 genes in female zebrafish decreased after treatment with ENDO alone and combination of LC50-ENDO and LC10-PHE. This might be related to a reduction in cortisol production. The overall results indicated that ENDO and PHE were toxic to zebrafish adults both individually and in combination, and that their co-presence induced changes in the expression of genes responsible for metabolic processes and defense mechanisms.
机译:使用斑马鱼(Danio rerio)成虫评估了硫丹(ENDO)与菲(PHE)的个体和综合毒性。 ENDO和PHE的96小时LC50值分别为4.6μgL-1和920μgL-1。为了评估混合物的毒性,将LC10和LC50浓度分为ENDO-LC10 + PHE-LC10,ENDO-LC10 + PHE-LC50,ENDO-LC50 + PHE-LC10和ENDO-LC50 + PHE-LC50四个组合,以及确定了它们的急性毒性。 LC50-ENDO和LC10-PHE的组合具有协同作用。此外,在有或没有PHE的ENDO中暴露的斑马鱼体内,乙酰胆碱酯酶的活性都会降低。与单独治疗相比,联合治疗诱导更高的谷胱甘肽S-转移酶活性。与PHE处理的鱼类相比,ENDO处理的鱼类的头和身体中的羧基酯酶活性均增加。使用RT-qPCR技术,CYP1A基因表达在所有组合中均显着上调,而CYP3A未改变,表明参与防御的酶可能在排毒中起不同作用。 CYP7A1基因负责胆汁酸的生物合成后,暴露于协同组合暴露显着下调,指协同作用可能是由于减少斑马鱼的胆汁产生。在与性别相关的基因中,雌性斑马鱼中的CYP11A1和CYP17A1基因在单独使用ENDO以及LC50-ENDO和LC10-PHE联合治疗后下降。这可能与皮质醇产生的减少有关。总体结果表明,ENDO和PHE对斑马鱼成虫单独和组合均具有毒性,并且它们的共存诱导了负责代谢过程和防御机制的基因表达的变化。

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