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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Sex-Dependent RNA Editing and N6-adenosine RNA Methylation Profiling in the Gonads of a Fish, the Olive Flounder (Paralichthys olivaceus)
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Sex-Dependent RNA Editing and N6-adenosine RNA Methylation Profiling in the Gonads of a Fish, the Olive Flounder (Paralichthys olivaceus)

机译:性依赖性的RNA编辑和N6-腺苷RNA甲基化分析在鱼类的流体中,橄榄树(Paralichthys Olivaceus)

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摘要

Adenosine-to-inosine (A-to-I) editing and N6-methyladenosine (m6A) are two of the most abundant RNA modifications. Here, we examined the characteristics of RNA editing and the transcriptome-wide m6A modification profile in the gonads of the olive flounder, Paralichthys olivaceus, an important maricultured fish in Asia. The gonadal differentiation and development of the flounder are controlled by genetic as well as environmental factors, and the epigenetic mechanism may play an important role. In total, 742 RNA editing events were identified, 459 of which caused A to I conversion. Most A-to-I sites were located in 3’UTRs, while 61 were detected in coding regions (CDs). The number of editing sites in the testis was higher than that in the ovary. Transcriptome-wide analyses showed that more than one-half of the transcribed genes presented an m6A modification in the flounder gonads, and approximately 60 % of the differentially expressed genes (DEGs) between the testis and ovary appeared to be negatively correlated with m6A methylation enrichment. Further analyses revealed that the mRNA expression of some sex-related genes (e.g., dmrt1 and amh) in the gonads may be regulated by changes in mRNA m6A enrichment. Functional enrichment analysis indicated that the RNA editing and m6A modifications were enriched in several canonical pathways (e.g., Wnt and MAPK signaling pathways) in fish gonads and in some pathways whose roles have not been investigated in relation to fish sex differentiation and gonadal development (e.g., PPAR and RNA degradation pathways). There were 125 genes that were modified by both A-to-I editing and m6A, but the two types of modifications mostly occurred at different sites. Our results suggested that the presence of sex-specific RNA modifications may be involved in the regulation of gonadal development and gametogenesis.
机译:腺苷对尼古斯(A-TO-I)编辑和N6-甲基腺苷(M6A)是最丰富的RNA修饰中的两个。在这里,我们检查了橄榄野生植物的Gonads,Paralichthys Olivaceus的Gonads中RNA编辑和转录组宽M6A改性谱的特征,这是亚洲重要的养殖鱼。流氓的差异化和开发由遗传和环境因素控制,表观遗传机制可能起到重要作用。总共确定了742个RNA编辑事件,其中459个导致I转换。大多数A-to-i网站位于3'UTR,而在编码区域(CD)中检测到61。睾丸中的编辑网站数量高于卵巢中的站点。转录物宽分析表明,超过一半的转录基因在比较的Gonad中呈现M6A改性,并且睾丸和卵巢之间的大约60%的差异表达基因(DEGS)似乎与M6A甲基化富集呈负相关。进一步的分析显示,可以通过MRNA M6A富集的变化来调节GONAD中一些性相关基因(例如,DMRT1和AMH)的mRNA表达。功能性富集分析表明,RNA编辑和M6A修饰在鱼类的几种规范途径(例如,WNT和MAPK信号通路)中,并且在某些途径中,其作主尚未有关鱼性别分化和性腺发育(例如,PPAR和RNA降解途径)。通过A-to-I编辑和M6A改变了125个基因,但两种类型的修饰主要发生在不同的位点。我们的研究结果表明,性别特异性RNA修饰的存在可能参与治疗性腺发育和配子发生。

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