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首页> 外文期刊>Scientific reports. >Identification, expression, and endocrine-disruption of three ecdysone-responsive genes in the sentinel species Gammarus fossarum
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Identification, expression, and endocrine-disruption of three ecdysone-responsive genes in the sentinel species Gammarus fossarum

机译:前哨物种镰刀菌中三个蜕皮激素响应基因的鉴定,表达和内分泌干扰

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Taking advantage of a large transcriptomic dataset recently obtained in the sentinel crustacean amphipod Gammarus fossarum, we developed an approach based on sequence similarity and phylogenetic reconstruction to identify key players involved in the endocrine regulation of G. fossarum. Our work identified three genes of interest: the nuclear receptors RXR and E75, and the regulator broad-complex (BR). Their involvement in the regulation of molting and reproduction, along with their sensitivity to chemical contamination were experimentally assessed by studying gene expression during the female reproductive cycle, and after laboratory exposure to model endocrine disrupting compounds (EDCs): pyriproxyfen, tebufenozide and piperonyl butoxide. RXR expression suggested a role of this gene in ecdysis and post-molting processes. E75 presented two expression peaks that suggested a role in vitellogenesis, and molting. BR expression showed no variation during molting/reproductive cycle. After exposure to the three EDCs, a strong inhibition of the inter-molt E75 peak was observed with tebufenozide, and an induction of RXR after exposure to pyriproxyfen and piperonyl butoxide. These results confirm the implication of RXR and E75 in hormonal regulation of female reproductive cycles in G. fossarum and their sensitivity towards EDCs opens the possibility of using them as specific endocrine disruption biomarkers.
机译:利用最近在前哨甲壳类两栖动物Gammarus fossarum中获得的大量转录组数据集,我们开发了一种基于序列相似性和系统发育重建的方法,以鉴定参与G. fossarum内分泌调节的关键参与者。我们的工作确定了三个感兴趣的基因:核受体RXR和E75,以及调节子宽复合体(BR)。通过研究雌性生殖周期中以及实验室暴露于模型内分泌干扰化合物(EDC):吡pyr昔芬,丁苯芬唑和胡椒基丁醚后的基因表达,通过实验评估了它们参与蜕皮和繁殖调控及其对化学污染的敏感性。 RXR表达表明该基因在蜕皮和蜕皮后过程中的作用。 E75出现两个表达峰,提示它们在卵黄发生和蜕皮中起作用。 BR的表达在蜕皮/生殖周期中没有变化。暴露于三个EDCs后,用戊丁苯胺观察到了熔体间E75峰的强烈抑制作用,暴露于吡吡氧芬和胡椒基丁醚后诱导了RXR。这些结果证实了RXR和E75在镰刀菌雌性生殖周期的激素调节中的意义,并且它们对EDC的敏感性打开了将它们用作特定内分泌干扰生物标志物的可能性。

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