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在幼鱼发育早期用17α-乙炔雌二醇(EE2)处理野生拟鲤(Rutilus rutilus)会破坏雌激素反馈循环中直接相关基因的表达。

17α-Ethinylestradiol (EE2) treatment of wild roach (Rutilus rutilus) during early life development disrupts expression of genes directly involved in the feedback cycle of estrogen.

作者信息

Nikoleris Lina, Hultin Cecilia L, Hallgren Per, Hansson Maria C

机构信息

Centre for Environmental and Climate Research (CEC), Lund University, SE-223 62 Lund, Sweden; Section for Biodiversity, Department of Biology, Lund University, Ecology Building, SE-223 62 Lund, Sweden.

Centre for Environmental and Climate Research (CEC), Lund University, SE-223 62 Lund, Sweden.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2016 Feb;180:56-64. doi: 10.1016/j.cbpc.2015.12.002. Epub 2015 Dec 10.

Abstract

Fish are more sensitive to introduced disturbances from synthetic endocrine disrupting compounds during early life phases compared with mature stages. 17α-Ethinylestradiol (EE2), which is the active compound in human oral contraceptives and hormone replacement therapies, is today ever present in the effluents from sewage treatment plants. EE2 targets and interacts with the endogenous biological systems of exposed vertebrates resulting in to large extents unknown short- and long-term effects. We investigated how EE2 exposure affects expression profiles of a large number of target genes during early life of roach (Rutilus rutilus). We exposed fertilized roach eggs collected from a lake in Southern Sweden to EE2 for 12weeks together with 1+-year-old roach in aquaria. We measured the gene expression of the estrogen receptor (esr)1/2a/2b, androgen receptor (ar), vitellogenin, cytochrome P450 (cyp)19a1a/1b in fertilized eggs; newly hatched larvae; 12-week-old fry; and juvenile wild roach (1+-year-old). Results shows that an EE2 concentration as low as 0.5ng/L significantly affects gene expression during early development. Gene expression responses vary both among life stages and molecular receptors. We also show that the gene profile of the estrogen feedback cycle to a large extent depends on the relationship between the three esr genes and the two cyp19a1 genes, which are all up-regulated with age. Results indicate that a disruption of the natural activity of the dominant esr gene could lead to detrimental biological effects if EE2 exposure occurs during development, even if this exposure occurred for only a short period.

摘要

与成熟阶段相比,鱼类在生命早期阶段对合成内分泌干扰化合物引入的干扰更为敏感。17α-乙炔雌二醇(EE2)是人类口服避孕药和激素替代疗法中的活性化合物,如今在污水处理厂的废水中一直存在。EE2靶向并与受暴露脊椎动物的内源性生物系统相互作用,在很大程度上导致未知的短期和长期影响。我们研究了EE2暴露如何影响蟑螂(Rutilus rutilus)生命早期大量靶基因的表达谱。我们将从瑞典南部一个湖泊收集的受精蟑螂卵与1岁以上的蟑螂一起在水族箱中暴露于EE2中12周。我们测量了受精卵、新孵化的幼虫、12周龄的鱼苗和幼年野生蟑螂(1岁以上)中雌激素受体(esr)1/2a/2b、雄激素受体(ar)、卵黄蛋白原、细胞色素P450(cyp)19a1a/1b的基因表达。结果表明,低至0.5ng/L的EE2浓度在早期发育过程中会显著影响基因表达。基因表达反应在生命阶段和分子受体之间都有所不同。我们还表明,雌激素反馈循环的基因谱在很大程度上取决于三个esr基因和两个cyp19a1基因之间的关系,它们都随着年龄的增长而上调。结果表明,如果在发育过程中发生EE2暴露,即使这种暴露只发生很短时间,主导esr基因自然活性的破坏也可能导致有害的生物学效应。

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