Xiong Lei, Yang Mengli, Zheng Kai, Wang Ziming, Gu Shengli, Tong Jiucui, Liu Jianjun, Shah Nadar Ali, Nie Liuwang
Life Science College, Provincial Key Lab of the Conservation and Exploitation Research of Biological Resources in Anhui, Anhui Normal University, Wuhu, China.
Biochemistry Department, Wannan Medical College, Wuhu, China.
Front Genet. 2020 Mar 2;11:133. doi: 10.3389/fgene.2020.00133. eCollection 2020.
Some differentially expressed genes (DEGs) that encode key enzymes involved in steroidogenic biosynthesis () and key molecules related to gonadal functions (, , , , , , and ) have been identified in adult gonadal RNA-seq studies of Reeves' pond turtle () 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 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 , mre-miR-200a-3p and , mre-miR-101-3p and , and mre-miR-138-5p and 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.
在对具有温度依赖型性别决定(TSD)的中华花龟成年性腺RNA测序研究中,已鉴定出一些差异表达基因(DEG),这些基因编码参与类固醇生物合成的关键酶以及与性腺功能相关的关键分子(、、、、、、和)。性腺功能维持和配子发生是一个高度调控和协调的生物学过程,越来越多的证据表明,微小RNA(miRNA)可能参与了这一动态过程。然而,尚不清楚由miRNA组成的调控网络如何改变这些基因的表达水平。在本研究中,对中华花龟成年睾丸和卵巢组织进行miRNA测序,共检测到25个已知miRNA和379个新miRNA,其中60个miRNA在睾丸和卵巢中差异表达。基于差异表达的miRNA共预测到1477个靶基因,其中221个靶基因也表现出差异表达。为验证测序数据的准确性,通过定量逆转录实时PCR对10个差异表达的miRNA进行了验证,结果与转录组测序结果一致。此外,还鉴定出几对miRNA/靶基因对,即mre-let-7a-5p/mre-let-7e-5p和、mre-miR-200a-3p和、mre-miR-101-3p和以及mre-miR-138-5p和。为探究miRNA的调控作用,我们对调控网络中的miRNA和221个靶基因进行了靶基因富集分析。然后比较了基于DEG和靶基因的与性腺功能维持和配子发生相关的信号通路。我们的研究结果为进一步研究TSD龟类中涉及miRNA的调控机制提供了关键信息。