Provincial Key Lab of the Conservation and Exploitation Research of Biological Resources in Anhui, College of Life Sciences, Anhui Normal University, Wuhu, China.
Biol Reprod. 2020 Feb 12;102(1):27-37. doi: 10.1093/biolre/ioz147.
A number of genes relevant for sex determination have been found in species with temperature-dependent sex determination. Epigenetics play a key role in sex determination, but characterization of deoxyribonucleic acid methylation of sex-related genes on temperature-dependent sex determination remains unclear. Mauremys reevesii is a typical species with temperature-dependent sex determination. In this study, we analyzed the Cytosine Guanine (CpG) methylation status of the proximal promoters, the messenger ribonucleic acid expression patterns and the correlation between methylation and expression levels of Aromatase, Forkhead box protein L2, Doublesex and mab3-related transcription factor 1, sex-determining region on Y chromosome-box 9, and anti-Müllerian hormone, which are key genes in sex determination in other species. We also analyzed the expression level of genes that encode enzymes involved in methylation and demethylation. The expression levels of Aromatase and Forkhead box protein L2 at the female producing temperature were higher than those at the male producing temperature; the expression levels of Doublesex and mab3-related transcription factor 1, sex-determining region on Y chromosome-box 9, and anti-Müllerian hormone were higher at MPT. The expression of some genes involved in methylation and demethylation is significantly different between male producing temperature and female producing temperature. The expression of messenger ribonucleic acid of genes involved in deoxyribonucleic acid methylation and demethylation affected by temperature, together with other factors, may change the methylation level of the regulatory regions of sex-related genes, which may further lead to temperature-specific expression of sex-related genes, and eventually affect the differentiation of the gonads.
许多与性别决定相关的基因已在温度依赖性别决定的物种中被发现。表观遗传学在性别决定中起着关键作用,但温度依赖性别决定中与性别相关基因的脱氧核糖核酸甲基化特征仍不清楚。红耳龟是温度依赖性别决定的典型物种。在本研究中,我们分析了近端启动子的胞嘧啶鸟嘌呤(CpG)甲基化状态、信使核糖核酸表达模式,以及芳香化酶、叉头框蛋白 L2、双性和 mab3 相关转录因子 1、Y 染色体性别决定区盒 9 和抗苗勒管激素的甲基化和表达水平之间的相关性,这些基因是其他物种性别决定的关键基因。我们还分析了参与甲基化和去甲基化的基因的表达水平。在雌性产生温度下,芳香化酶和叉头框蛋白 L2 的表达水平高于雄性产生温度;在 MPT 时,双性和 mab3 相关转录因子 1、Y 染色体性别决定区盒 9 和抗苗勒管激素的表达水平较高。参与甲基化和去甲基化的一些基因的表达在雄性产生温度和雌性产生温度之间存在显著差异。受温度影响的脱氧核糖核酸甲基化和去甲基化相关基因的信使核糖核酸表达,加上其他因素,可能会改变性别相关基因的调控区的甲基化水平,这可能进一步导致性别相关基因的温度特异性表达,并最终影响性腺的分化。