首页> 外文期刊>Aquatic Toxicology >Waterborne exposure to triadimefon causes thyroid endocrine disruption and developmental delay in Xenopus laevis tadpoles
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Waterborne exposure to triadimefon causes thyroid endocrine disruption and developmental delay in Xenopus laevis tadpoles

机译:水性暴露于三唑酮会导致非洲爪蟾的甲状腺内分泌破坏和发育延迟

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摘要

Triadimefon (TDF) is a triazole-derivative fungicide that is detectable in the environment and target agricultural products, prompting concern over its risk to wildlife and human health. In our study, Nieuwkoop & Faber stage 51 Xenopus laevis tadpoles were exposed to different nominal concentrations TDF (0, 0.112, and 1.12 mg/L) for 21 days while the tadpoles were undergoing pre-morphological development. Developmental condition, bioaccumulation and thyroid hormone levels, and mRNA expression of genes involved in the hypothalamic-pituitary-thyroid (HPT) axis were examined. Exposure to TDF caused a reduction in developmental rates on pre-metamorphosis of X. laevis. TDF exposure significantly decreased thyroid hormone (T-4 and T-3) concentrations, indicating thyroid endocrine disruption. The downregulation of thyroglobulin and upregulation of genes related to thyroid hormone metabolism (ugt1ab) might be responsible for the decreased thyroid hormone concentrations. Treatment with TDF also significantly increased mRNA expression of genes involved in thyroid-stimulating hormone as a compensatory mechanism response to decreased thyroid hormone concentrations. Gene expression and in silico ligand docking studies were combined to study the interaction between TDF and thyroid hormone receptor. Results showed that TDF could consequently affect the HPT axis signaling pathway. In addition, bioconcentration of TDF was observed in tadpoles, indicating the bioactivity of this compound. Taken together, the results suggest that TDF alters the HPT axis-related genes and changes thyroid hormone contents in X. laevis tadpoles, thus causing thyroid endocrine disruption and consequently delaying thyroid hormones-dependent metamorphic development. (C) 2016 Elsevier B.V. All rights reserved.
机译:Triadimefon(TDF)是一种三唑衍生物型杀菌剂,可在环境中检测到并以农产品为目标,引起人们对其对野生生物和人类健康的风险的关注。在我们的研究中,Nieuwkoop和Faber阶段51的非洲爪蟾t暴露于不同的标称浓度TDF(0、0.112和1.12 mg / L)下达21天,而t正在进行形态学前发育。检查发育状况,生物蓄积和甲状腺激素水平,以及与下丘脑-垂体-甲状腺(HPT)轴有关的基因的mRNA表达。暴露于TDF导致X. laevis变态前发育速度降低。 TDF暴露会显着降低甲状腺激素(T-4和T-3)浓度,表明甲状腺内分泌紊乱。甲状腺球蛋白的下调和与甲状腺激素代谢有关的基因(ugt1ab)的上调可能是甲状腺激素浓度降低的原因。 TDF处理还显着增加了参与甲状腺刺激激素的基因的mRNA表达,作为对降低甲状腺激素浓度的补偿机制。将基因表达和计算机配体对接研究相结合,以研究TDF与甲状腺激素受体之间的相互作用。结果表明,TDF可能因此影响HPT轴信号通路。另外,在t中观察到TDF的生物浓缩,表明该化合物的生物活性。两者合计,结果表明TDF改变了HPT轴相关基因,并改变了X. laevis t中的甲状腺激素含量,从而导致甲状腺内分泌紊乱并因此延迟了甲状腺激素依赖性变态发育。 (C)2016 Elsevier B.V.保留所有权利。

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