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首页> 外文期刊>Environmental Science and Pollution Research >Developmental toxicity of the triazole fungicide cyproconazole in embryo-larval stages of zebrafish (Danio rerio)
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Developmental toxicity of the triazole fungicide cyproconazole in embryo-larval stages of zebrafish (Danio rerio)

机译:斑马鱼胚胎幼虫阶段三唑杀菌剂氰基唑唑(Danio Rerio)的发育毒性

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摘要

Cyproconazole is a triazole fungicide used to protect a diverse range of fruits, vegetables, and grain crops. As such, it has the potential to enter aquatic environments and affect non-target organisms. The objective of this study was to assess the acute toxicity of the triazole fungicide cyproconazole to zebrafish embryos by assessing mortality, developmental defects, morphological abnormality, oxidative respiration, and locomotor activity following a 96-h exposure. Zebrafish embryos at 6-h post-fertilization (hpf) were exposed to either a solvent control (0.1% DMSO, v/v), or one dose of 10, 25, 50, 100, 250, and 500 mu M cyproconazole for 96 h. Data indicated that cyproconazole exhibited low toxicity to zebrafish embryos, with a 96-h LC50 value of 90.6 mu M ( 26.4 mg/L). Zebrafish embryos/larvae displayed a significant decrease in spontaneous movement, hatching rate, and heartbeats/20 s with 50, 100, and 250 mu M cyproconazole exposure. Malformations (i.e., pericardial edema, yolk sac edema, tail deformation, and spine deformation) were also detected in zebrafish exposed to aeyen 50 mu M cyproconazole, with significant increases in cumulative deformity rate at 48, 72, and 96 hpf. In addition, a 20-30% decrease in basal and oligomycin-induced ATP respiration was observed after 24-h exposure to 500 mu M cyproconazole in embryos. To determine if cyproconazole affected locomotor activity, a dark photokinesis assay was conducted in larvae following 7-day exposure to 1, 10, and 25 mu M cyproconazole in two independent trials. Activity in the dark period was decreased for zebrafish exposed to 25 mu M cyproconazole in the first trial, and hypoactivity was also observed in zebrafish exposed to 1 mu M cyproconazole in a second trial, suggesting that cyproconazole can affect locomotor activity. These data improve understanding of the toxicity of cyproconazole in developing zebrafish and contribute to environmental risk assessments for the triazole fungicides on aquatic organisms. We report that, based on the overall endpoints assessed, cyproconazole exhibits low risk for developing fish embryos, as many effects were observed above environmentally-relevant levels.
机译:环唑醇是用来保护水果,蔬菜和谷类作物的不同范围内的三唑类杀菌剂。因此,它必须进入水环境,影响非靶标生物的潜力。本研究的目的是通过评估死亡率,发育缺陷,形态学异常,氧化呼吸和运动活性以下的96小时暴露评估的三唑环唑醇的杀真菌剂对斑马鱼胚胎的急性毒性。在6小时后受精(HPF)斑马鱼胚胎暴露于溶剂对照(0.1%DMSO,V / V),或10中的一个剂量,25,50,100,250,和500微米环唑醇96 H。数据表明,环唑醇表现出低毒性的斑马鱼胚胎,用90.6微米96小时LC 50值(26.4毫克/升)。斑马鱼胚胎/幼虫显示在自发运动的减少显著,孵化率和心跳/ 20秒,50,100,和250微米环唑醇曝光。畸形(即,心包水肿,卵黄囊水肿,尾变形,和脊柱变形)在斑马鱼暴露于AE&LT也检测到;日元> 50微米环丙唑醇,与48,72中累积的畸形率显著增加,并且96 HPF。此外,经过24小时的曝光,观察到500微米环丙唑醇在胚胎在基底和寡霉素诱导的ATP呼吸20-30%的下降。要确定是否受影响的环唑醇运动活性,暗趋光测定法在下面的幼虫7天暴露于1,10,和25微米环丙唑醇在两个独立的试验中进行。在黑暗时期的活性斑马鱼在第一次试验暴露于25微米环丙唑醇降低,和在斑马鱼中的第二试验暴露于1微米环丙唑醇,也观察到活动减退,这表明环唑醇可影响运动活性。这些数据增进理解环唑醇在发展中国家斑马鱼的毒性,并有助于对水生生物的三唑类杀菌剂的环境风险评估。我们报告的基础上,评估了整体的端点,环唑醇展品开发斑马鱼胚胎,如上环保相关的水平观察到许多影响风险较低。

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