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首页> 外文期刊>Aquatic Toxicology >Long-term exposure to environmentally relevant concentrations of progesterone and norgestrel affects sex differentiation in zebrafish (Danio rerio)
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Long-term exposure to environmentally relevant concentrations of progesterone and norgestrel affects sex differentiation in zebrafish (Danio rerio)

机译:长期接触与环境有关的孕酮和炔诺孕酮浓度会影响斑马鱼的性别分化(达尼奥·里奥)

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The aim of this study was to investigate the effects of progestins on the sex differentiation of zebrafish by measuring the sex ratio and transcriptions of genes related to sex differentiation (Amh, Dmrt1, Figa, Sox9a and Sox9b genes) as well as sex hormone levels and transcriptional expression profiles along the hypothalamic-pituitary-gonadal (HPG) and hypothalamic-pituitary-adrenal (HPA) axes in juvenile zebrafish. Exposure of zebrafish to 4, 33, 63 ng L-1 progesterone (P4) or 4, 34, 77 ng L-1 norgestrel (NGT) started at 20 days post fertilization (dpf) and ended at 60 dpf. The results showed that exposure to P4 caused a significant increase in proportion of females as well as significant down-regulation of Amh gene and up-regulation of Figa at a concentration of 63 ng L-1. However, the shift in the sex ratio toward males was observed following exposure to 34 and 77 ng L-1 NGT, which came along with the significant induction of Dmrt1 gene and inhibition of Figa gene. The sex hormones in exposed fish Were measured with estrone being detected only in the fish exposed to the highest P4 concentration; whereas estradiol and androstenedione were detected only in the fish of the control and lowest NGT concentration. Furthermore, the increase in females was associated with the significant up-regulation of several key genes controlling the synthesis of sex hormones (i.e., Cyp17, Cyp19a1a and Hsd3b) following exposure to 63 ng L-1 P4 whereas the significant down-regulation of Cyp11a1, Cyp17, Cyp19a1a and Hsd3b genes was observed in the male-biased populations caused by 34 and 77 ng L-1 NGT. The overall results imply that both P4 and NGT could significantly affect sex differentiation in zebrafish, and that changes may be reflected by altered sex hormone levels and transcriptional expression profiles of genes related to synthesis of sex hormones. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究的目的是通过测量性别比和与性别分化相关的基因(Amh,Dmrt1,Figa,Sox9a和Sox9b基因)的性别比例和性激素水平来研究孕激素对斑马鱼性别分化的影响。斑马鱼下丘脑-垂体-性腺(HPG)和下丘脑-垂体-肾上腺(HPA)轴的转录表达谱。斑马鱼暴露于4、33、63 ng L-1孕酮(​​P4)或4、34、77 ng L-1孕酮(​​NGT),在受精后20天(dpf)开始暴露,并以60 dpf结束。结果表明,在浓度为63 ng L-1的情况下,暴露于P4会导致雌性比例显着增加以及Amh基因的显着下调和Figa的上调。然而,在暴露于34和77 ng L-1 NGT后观察到性别比向男性的转变,伴随着Dmrt1基因的显着诱导和Figa基因的抑制。仅在暴露于最高P4浓度的鱼中检测到雌酮,才对暴露鱼中的性激素进行了测定。而雌二醇和雄烯二酮仅在对照组和NGT浓度最低的鱼中检出。此外,女性的增加与暴露于63 ng L-1 P4后控制性激素合成的几个关键基因的显着上调相关(即Cyp17,Cyp19a1a和Hsd3b),而Cyp11a1的显着下调在由34和77 ng L-1 NGT引起的男性偏见人群中观察到Cyp17,Cyp19a1a和Hsd3b基因。总体结果表明,P4和NGT均可显着影响斑马鱼的性别分化,并且这种变化可能由性激素水平的改变和与性激素合成有关的基因的转录表达谱所反映。 (C)2015 Elsevier B.V.保留所有权利。

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