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首页> 外文期刊>Journal of experimental zoology, Part B. Molecular and developmental evolution >Integrated mRNA and miRNA expression profile analyses reveal the potential roles of sex-biased miRNA-mRNA pairs in gonad tissues of the Chinese concave-eared torrent frog (Odorrana tormota)
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Integrated mRNA and miRNA expression profile analyses reveal the potential roles of sex-biased miRNA-mRNA pairs in gonad tissues of the Chinese concave-eared torrent frog (Odorrana tormota)

机译:集成mRNA和miRNA表达谱分析揭示了性别偏见的miRNA-mRNA对在中国凹入的洪流青蛙(Ooorana Tormota)的Gonad组织中的潜在作用

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摘要

The Chinese concave-eared torrent frog (Odorrana tormota) is typically sexually dimorphic. Females are significantly less common than males in the wild. Until now, the molecular mechanisms of reproduction and sex differentiation of frogs remain unclear. Here, we integrated mRNA and microRNA (miRNA) expression profiles to reveal the molecular mechanisms of reproduction and sex differentiation in O. tormota. We identified 234 differentially expressed miRNAs (DEMs) and 18,551 differentially expressed transcripts. Of these, 12,053 mRNAs and 64 miRNAs were upregulated in testes, and 6,498 mRNAs and 170 miRNAs were upregulated in ovaries. Integrated analysis of the miRNA and mRNA expression profiles predicted 75,602 potential miRNA-mRNA interaction sites, with 42,065 negative miRNA-mRNA interactions. We found 36 differentially expressed genes (DEGs) related to reproduction and sex differentiation, of which 15 DEGs formed 92 negative miRNA-mRNA interactions with 34 known DEMs. Thus, miRNAs may play other important roles in O. tormota. Furthermore, Gene Ontology enrichment and Kyoto Encyclopedia of Genes and Genomes pathway analyses showed reproductive-related processes, such as the gonadotropinreleasing hormone signaling pathway and ovarian steroidogenesis. Based on functional annotation and the literature, the retinoic acid signaling pathway, the SOX9-AMH pathway, and the process of spermatogenesis may be involved in the molecular mechanisms of reproduction and sex differentiation in O. tormota, and may be regulated by miRNAs. The miRNA-mRNA pairs described may provide further understanding of the regulatory mechanisms associated with reproduction and sex differentiation, and the molecular mechanism of reproduction in O. tormota.
机译:中国凹入的洪流青蛙(Oogotana Tormota)通常是性尺寸的。女性显着不太常见于野外的男性。到目前为止,青蛙的繁殖和性别分化的分子机制仍然不清楚。这里,我们集成mRNA和microRNA(miRNA)表达谱,揭示O. Tormota中繁殖和性别分化的分子机制。我们确定了234个差异表达的miRNA(DEMS)和18,551个差异表达的转录物。其中,在睾丸中上调了12,053mRNA和64 miRNA,并在卵巢中上调了6,498mRNA和170 miRNA。 MiRNA和mRNA表达谱的综合分析预测了75,602个潜在的miRNA-mRNA相互作用位点,具有42,065个负miRNA-mRNA相互作用。我们发现与繁殖和性分化相关的36种差异表达的基因(DEG),其中15次形成了92个负miRNA-mRNA相互作用与34个已知的DEM。因此,MiRNA可以在O. Tormota中发挥其他重要作用。此外,基因本体学富集和基因的京都植物和基因组途径分析显示出生殖相关的过程,例如促性腺激素激素信号通路和卵巢甾体化。基于功能性注释和文献,维甲酸信号通路,SOX9-AMH途径和精子发生过程可参与O. Tormota中的繁殖和性别分化的分子机制,并且可以由miRNA调节。所描述的miRNA-mRNA对可以进一步了解与繁殖和性分化相关的调节机制,以及O. Tormota的繁殖的分子机制。

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