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Identification and profiling of Cyprinus carpio microRNAs during ovary differentiation by deep sequencing

机译:鲤鱼卵巢分化过程中鲤的微小RNA的深度测序鉴定与分析

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Background MicroRNAs (miRNAs) are endogenous small non-coding RNAs that regulate gene expression by targeting specific mRNAs. However, the possible role of miRNAs in the ovary differentiation and development of fish is not well understood. In this study, we examined the expression profiles and differential expression of miRNAs during three key stages of ovarian development and different developmental stages in common carp Cyprinus carpio . Results A total of 8765 miRNAs were identified, including 2155 conserved miRNAs highly conserved among various species, 145 miRNAs registered in miRBase for common carp, and 6505 novel miRNAs identified in common carp for the first time. Comparison of miRNA expression profiles among the five libraries identified 714 co-expressed and 2382 specific expressed miRNAs. Overall, 150, 628, and 431 specifically expressed miRNAs were identified in primordial gonad, juvenile ovary, and adult ovary, respectively. MiR-6758-3p, miR-3050-5p, and miR-2985-3p were highly expressed in primordial gonad, miR-3544-5p, miR-6877-3p, and miR-9086-5p were highly expressed in juvenile ovary, and miR-154-3p, miR-5307-5p, and miR-3958-3p were highly expressed in adult ovary. Predicted target genes of specific miRNAs in primordial gonad were involved in many reproductive biology signaling pathways, including transforming growth factor-β, Wnt, oocyte meiosis, mitogen-activated protein kinase, Notch, p53, and gonadotropin-releasing hormone pathways. Target-gene prediction revealed upward trends in miRNAs targeting male-bias genes, including dmrt1 , atm , gsdf , and sox9 , and downward trends in miRNAs targeting female-bias genes including foxl2 , smad3 , and smad4 . Other sex-related genes such as sf1 were also predicted to be miRNA target genes. Conclusions This comprehensive miRNA transcriptome analysis demonstrated differential expression profiles of miRNAs during ovary development in common carp. These results could facilitate future exploitation of the sex-regulatory roles and mechanisms of miRNAs, especially in primordial gonads, while the specifically expressed miRNAs represent candidates for studying the mechanisms of ovary determination in Yellow River carp.
机译:背景技术MicroRNA(miRNA)是内源性小非编码RNA,可通过靶向特定mRNA来调节基因表达。但是,miRNA在鱼类卵巢分化和发育中的可能作用尚不清楚。在这项研究中,我们检查了鲤鱼鲤鱼卵巢发育的三个关键阶段和不同发育阶段的miRNA表达谱和差异表达。结果共鉴定出8765个miRNA,其中2155个保守的miRNA在不同物种中高度保守,首次在鲤鱼的miRBase中注册了145个miRNA,并首次在鲤鱼中鉴定了6505个新颖的miRNA。在五个文库中比较miRNA表达谱,确定了714个共表达的miRNA和2382个特异性表达的miRNA。总体而言,分别在原始生殖腺,少年卵巢和成年卵巢中鉴定出150、628和431个特异性表达的miRNA。 miR-6758-3p,miR-3050-5p和miR-2985-3p在原始生殖腺中高表达,miR-3544-5p,miR-6877-3p和miR-9086-5p在少年卵巢中高表达, miR-154-3p,miR-5307-5p和miR-3958-3p在成年卵巢中高度表达。原始性腺中特定miRNA的预测靶基因参与了许多生殖生物学信号转导途径,包括转化生长因子-β,Wnt,卵母细胞减数分裂,促分裂原活化蛋白激酶,Notch,p53和促性腺激素释放激素途径。靶基因预测揭示了靶向雄性偏置基因(包括dmrt1,atm,gsdf和sox9)的miRNA的上升趋势,以及靶向雌性偏置基因(包括foxl2,smad3和smad4)的miRNA下降的趋势。其他与性别有关的基因,例如sf1,也被预测为miRNA靶基因。结论这项全面的miRNA转录组分析证明了鲤鱼卵巢发育过程中miRNA的差异表达。这些结果可能有助于未来开发miRNA的性别调控作用和机制,特别是在原始性腺中,而特异性表达的miRNA代表了研究黄河鲤鱼卵巢决定机制的候选人。

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