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Transcriptome Profiling Insights the Feature of Sex Reversal Induced by High Temperature in Tongue Sole Cynoglossus semilaevis

机译:转录组分析揭示了舌尖舌半舌舌猴高温引起的性别逆转特征

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摘要

Sex reversal induced by temperature change is a common feature in fish. Usually, the sex ratio shift occurs when temperature deviates too much from normal during embryogenesis or sex differentiation stages. Despite decades of work, the mechanism of how temperature functions during early development and sex reversal remains mysterious. In this study, we used Chinese tongue sole as a model to identify features from gonad transcriptomic and epigenetic mechanisms involved in temperature induced masculinization. Some of genetic females reversed to pseudomales after high temperature treatment which caused the sex ratio imbalance. RNA-seq data showed that the expression profiles of females and males were significantly different, and set of genes showed sexually dimorphic expression. The general transcriptomic feature of pesudomales was similar with males, but the genes involved in spermatogenesis and energy metabolism were differentially expressed. In gonads, the methylation level of cyp19a1a promoter was higher in females than in males and pseudomales. Furthermore, high-temperature treatment increased the cyp19a1a promoter methylation levels of females. We observed a significant negative correlation between methylation levels and expression of cyp19ala. In vitro study showed that CpG within the cAMP response element (CRE) of the cyp19a1a promoter was hypermethylated, and DNA methylation decreased the basal and forskolin-induced activities of cyp19a1a promoter. These results suggested that epigenetic change, i.e., DNA methylation, which regulate the expression of cyp19a1a might be the mechanism for the temperature induced masculinization in tongue sole. It may be a common mechanism in teleost that can be induced sex reversal by temperature.
机译:温度变化引起的性逆转是鱼类的普遍特征。通常,当温度在胚胎发生或性别分化阶段偏离正常值过多时,就会发生性别比变化。尽管进行了数十年的研究,但温度在早期发育和性逆转过程中如何发挥作用的机制仍然是个谜。在这项研究中,我们以中国唯一的舌头为模型,从涉及温度诱导男性化的性腺转录组和表观遗传机制中识别特征。高温处理后,一些遗传雌性转变为假性雌性,这导致性别比失衡。 RNA-seq数据显示,雌性和雄性的表达谱显着不同,并且基因组显示出性二态表达。假男性的总体转录组特征与男性相似,但参与精子发生和能量代谢的基因差异表达。在性腺中,女性中cyp19a1a启动子的甲基化水平高于男性和假性男性。此外,高温处理增加了女性的cyp19a1a启动子甲基化水平。我们观察到甲基化水平和cyp19ala表达之间显着负相关。体外研究表明,cyp19a1a启动子的cAMP响应元件(CRE)中的CpG甲基化程度高,DNA甲基化降低了cyp19a1a启动子的基础和毛喉素诱导的活性。这些结果表明,调节cyp19a1a表达的表观遗传改变,即DNA甲基化,可能是温度引起舌底男性化的机制。这可能是硬骨鱼的一种常见机制,可以通过温度诱发性逆转。

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