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Comparison of Adult Testis and Ovary MicroRNA Expression Profiles in Reeves’ Pond Turtles (Mauremys reevesii) With Temperature-Dependent Sex Determination

机译:Reeves'池塘海龟(Mauremys Reevesii)中成年睾丸和卵巢微窝瘤表达曲线的比较

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摘要

Some differentially expressed genes (DEGs) that encode key enzymes involved in steroidogenic biosynthesis (CYP19A1) and key molecules related to gonadal functions (DMRT1, SOX9, AMH, FOXL2, WNT4, RSPO2, and GDF9) have been identified in adult gonadal RNA-seq studies of Reeves’ pond turtle (Mauremys reevesii) with temperature-dependent sex determination (TSD). Gonadal functional maintenance and gametogenesis comprises a highly regulated and coordinated biological process, and increasing evidence indicates that microRNAs (miRNAs) may be involved in this dynamic program. However, it is not clear how the regulatory network comprising miRNAs changes the expression levels of these genes. In this study, miRNA sequencing of adult testis and ovary tissues from M. reevesii detected 25 known and 379 novel miRNAs, where 60 miRNAs were differentially expressed in the testis and ovary. A total of 1,477 target genes based on the differentially expressed miRNAs were predicted, where 221 target genes also exhibited differential expression. To verify the accuracy of the sequencing data, 10 differentially expressed miRNAs were validated by quantitative reverse transcription real-time PCR, and were found to be consistent with the transcriptome sequencing results. Moreover, several miRNA/target gene pairs, i.e., mre-let-7a-5p/mre-let-7e-5p and CYP19A1, mre-miR-200a-3p and DMRT1, mre-miR-101-3p and SOX9, and mre-miR-138-5p and AMH were identified. To explore the regulatory role of miRNAs, we conducted target gene enrichment analysis of the miRNAs and 221 target genes in the regulatory network. The signaling pathways related to gonadal functional maintenance and gametogenesis based on the DEGs and target genes were then compared. Our findings provide crucial information to facilitate further research into the regulatory mechanisms involving miRNAs in turtle species with TSD.
机译:一些差异表达的基因(DEGS)参与类固醇的生物合成(CYP19A1)和相关的性腺功能(DMRT1,SOX9,AMH,FOXL2,WNT4,RSPO2和GDF9)已在成年性腺RNA-SEQ确定的关键分子,其编码的关键酶的穿过了池龟(黄喉雉)与温度相关的性别决定(TSD)的研究。性腺功能的维护和配子包括高度调节和协调的生物过程,并且越来越多的证据表明,微RNA(miRNA)可以在这个动态程序有关。然而,目前尚不清楚,其包括miRNA的调控网络如何改变这些基因的表达水平。在这项研究中,来自结核分枝雉成年睾丸和卵巢组织的miRNA测序检测25倍已知的,并且379新的miRNA,其中miRNA的60是在睾丸和卵巢中差异表达。共基于所述差异表达的miRNA 1477的靶基因进行了预测,其中221个靶基因也表现出差异表达。为了验证测序数据的准确性,10倍差异表达的miRNA通过定量反转录实时PCR验证,并且被认为是与转录组测序结果一致。此外,若干的miRNA /靶基因对,即,MRE-让-7A-5P / MRE-让-7E-5P和CYP19A1,MRE-MIR-200A-3P和DMRT1,MRE-的miR-101-3p和SOX9,和MRE-的miR-138-5p和AMH进行鉴定。为了探讨miRNA的调控作用,我们进行了miRNA和监管网络中221个靶基因的靶基因富集分析。有关性腺功能的维护和基于所述DEGS和靶基因的配子信号通路然后比较。我们的研究结果提供了重要的信息,以便进一步研究涉及与TSD龟种的miRNA的调控机制。

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