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温度依赖型性别决定的红耳龟性腺芳香酶(cyp19a1)的表观遗传调控。

Epigenetic control of gonadal aromatase (cyp19a1) in temperature-dependent sex determination of red-eared slider turtles.

机构信息

Section of Integrative Biology, University of Texas at Austin, Austin, Texas, United States of America.

出版信息

PLoS One. 2013 Jun 7;8(6):e63599. doi: 10.1371/journal.pone.0063599. Print 2013.

Abstract

In the red-eared slider turtle (Trachemys scripta), a species with temperature-dependent sex determination (TSD), the expression of the aromatase gene during gonad development is strictly limited to the female-producing temperature. The underlying mechanism remains unknown. In this study, we identified the upstream 5'-flanking region of the aromatase gene, gonad-specific promoter, and the temperature-dependent DNA methylation signatures during gonad development in the red-eared slider turtle. The 5'-flanking region of the slider aromatase exhibited sequence similarities to the aromatase genes of the American alligator, chicken, quail, and zebra finch. A putative TATA box was located 31 bp upstream of the gonad-specific transcription start site. DNA methylation at the CpG sites between the putative binding sites of the fork head domain factor (FOX) and vertebrate steroidogenic factor 1 (SF1) and adjacent TATA box in the promoter region were significantly lower in embryonic gonads at the female-producing temperature compared the male-producing temperature. A shift from male- to female-, but not from female- to male-, producing temperature changed the level of DNA methylation in gonads. Taken together these results indicate that the temperature, particularly female-producing temperature, allows demethylation at the specific CpG sites of the promoter region which leads the temperature-specific expression of aromatase during gonad development.

摘要

在温度依赖型性别决定(TSD)的红耳龟(Trachemys scripta)中,芳香酶基因在性腺发育过程中的表达严格局限于产生雌性的温度。其潜在机制尚不清楚。在这项研究中,我们鉴定了红耳龟芳香酶基因的上游 5'-侧翼区、性腺特异性启动子,以及在性腺发育过程中温度依赖性的 DNA 甲基化特征。滑动芳香酶的 5'-侧翼区与美洲鳄、鸡、鹌鹑和斑胸草雀的芳香酶基因具有序列相似性。在性腺特异性转录起始位点上游 31 个碱基处存在一个假定的 TATA 盒。在启动子区域中,假定的叉头域因子(FOX)和脊椎动物类固醇生成因子 1(SF1)结合位点之间的 CpG 位点的 DNA 甲基化以及相邻的 TATA 盒在雌性产生温度的胚胎性腺中明显低于雄性产生温度。从雄性到雌性,而不是从雌性到雄性,产生温度的转变改变了性腺中 DNA 甲基化的水平。这些结果表明,温度,特别是雌性产生温度,允许启动子区域特定 CpG 位点的去甲基化,从而导致芳香酶在性腺发育过程中温度特异性表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af36/3676416/2ff442341545/pone.0063599.g001.jpg

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