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The Effects of Synthetic Estrogen Exposure on the Sexually Dimorphic Liver Transcriptome of the Sex-Role-Reversed Gulf Pipefish

机译:合成雌激素暴露对性角色颠倒的海湾杨Pipe鱼性二态性肝转录组的影响。

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摘要

Species exhibiting sex-role reversal provide an unusual perspective on the evolution of sex roles and sex differences. However, the proximate effects of sex-role reversal are largely unknown. Endocrine disruptors provide an experimental mechanism to address hormonal regulation of sexually dimorphic gene expression in sex-role-reversed taxa. Here, we investigate gene expression patterns in the liver of the sex-role-reversed Gulf pipefish, because the liver is known to be sexually dimorphic and estrogen-regulated in species with conventional sex roles. Using next-generation RNA-sequencing technology (RNA-seq), we detected sexually dimorphic hepatic gene expression patterns, with a total of 482 differentially expressed genes between the sexes in Gulf pipefish. Two-thirds of these genes were over-expressed in females, and the sex-specific transcriptomes of this sex-role-reversed pipefish’s liver were superficially similar to those of fishes with conventional sex-roles. We exposed females, pregnant males, and non-pregnant males to 17α-ethinylestradiol (EE2) at ecologically relevant concentrations of 5ng/L and compared gene expression patterns in the livers of exposed fish to control fish. Several genes that were up-regulated in EE2-exposed males relative to control males were also found to be female-biased in control animals. These genes included several of the classic estrogen biomarkers, such as vitellogenin, choriogenin, and zona pellucida. Thus, estrogen exposure induced feminization of the male liver transcriptome in a sex-role-reversed pipefish. These results suggest that the ancestral state of estrogen-regulated female reproductive physiology has been retained in all sex-role-reversed vertebrates thus far studied, despite substantial evolution of the hormonal regulation of ornamentation and mating behavior in these interesting taxa.
机译:表现出性别角色反转的物种为性别角色和性别差异的演变提供了不同寻常的视角。然而,性角色逆转的直接影响在很大程度上尚不清楚。内分泌干​​扰物提供了一种实验机制来解决性角色逆转分类群中性二态基因表达的激素调节。在这里,我们研究性角色逆转的海湾pipe鱼的肝脏中的基因表达模式,因为已知肝脏在具有常规性别角色的物种中具有两性性和雌激素调节性。使用下一代RNA测序技术(RNA-seq),我们检测到了性二态性肝基因表达模式,在海湾pipe鱼中共有482个性别之间的差异表达基因。这些基因中有三分之二在女性中过表达,并且这种性角色反转的pipe鱼肝脏的性别特异性转录组在表面上与具有常规性角色的鱼类相似。我们以生态相关的浓度5ng / L将雌性,怀孕的雄性和未怀孕的雄性暴露于17α-炔雌醇(EE2),并比较了裸露的鱼类的肝脏中的基因表达模式与对照鱼。相对于对照雄性,在暴露于EE2的雄性中几个上调的基因在对照动物中也被发现是雌性偏向的。这些基因包括几种经典的雌激素生物标志物,例如卵黄蛋白原,卵黄蛋白原和透明带。因此,在逆转性角色的pipe鱼中,雌激素暴露诱导了男性肝脏转录组的女性化。这些结果表明,迄今为止,尽管在这些有趣的类群中,激素调节的装饰和交配行为有了实质性的演变,但迄今为止,在所有性逆转的脊椎动物中,雌激素调节的雌性生殖生理学的祖先状态都得以保留。

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