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三氟苯嘧啶在稀有鮈鲫胚胎中的吸收动力学、发育毒性及mRNA表达评估

Assessment of trifloxystrobin uptake kinetics, developmental toxicity and mRNA expression in rare minnow embryos.

作者信息

Zhu Bin, Liu Guang-Lu, Liu Lei, Ling Fei, Wang Gao-Xue

机构信息

College of Animal Science and Technology, Northwest A&F University, Yangling, Shaanxi 712100, China.

College of Science, Northwest A&F University, Yangling, Shaanxi 712100, China.

出版信息

Chemosphere. 2015 Feb;120:447-55. doi: 10.1016/j.chemosphere.2014.07.100. Epub 2014 Sep 18.

Abstract

Trifloxystrobin (TFS) is the widely used strobilurin fungicide. However, little information is so far available regarding the uptake kinetics and developmental toxicity of TFS to fish. The present study was conducted to investigate the uptake kinetics, potential environment risk and toxicity of TFS on Gobiocypris rarus embryos. Results revealed that increased malformation, decreased body length and heart rate, affected spontaneous movement and swimming speed provide a gradual concentration-dependent manner; values of 144 h LC50 (median lethal concentration) and EC50 (median effective concentration) were 1.11 and 0.86 μg L(-1). Continuous exposure to TFS resulted in a steady accumulation with no evidence of elimination. Enzyme activities were significantly changed; reactive oxygen species and DNA damage were significantly induced after TFS treatment. Certain genes related to cell apoptosis (p53), metabolism (cyp1a), stress response (hsp70) and blood vessels (vezf1) development were all significantly up-regulated. This is the first study to define uptake kinetics and to focus on behavioral consequences, physiological changes and mRNA expression following TFS exposure in the early life stages of fish. Our results suggest that TFS is highly toxic to fish embryos.

摘要

肟菌酯(TFS)是一种广泛使用的甲氧基丙烯酸酯类杀菌剂。然而,目前关于TFS对鱼类的吸收动力学和发育毒性的信息还很少。本研究旨在探讨TFS对稀有鮈鲫胚胎的吸收动力学、潜在环境风险和毒性。结果表明,畸形增加、体长和心率降低、自发运动和游泳速度受影响均呈浓度依赖性增加;144小时半数致死浓度(LC50)和半数有效浓度(EC50)分别为1.11和0.86μg L(-1)。持续暴露于TFS会导致稳定积累且无消除迹象。酶活性发生显著变化;TFS处理后活性氧和DNA损伤显著诱导。与细胞凋亡(p53)、代谢(cyp1a)、应激反应(hsp70)和血管(vezf1)发育相关的某些基因均显著上调。这是第一项确定吸收动力学并关注鱼类早期生命阶段TFS暴露后行为后果、生理变化和mRNA表达的研究。我们的结果表明,TFS对鱼类胚胎具有高毒性。

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