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    黄姑鱼sox9a基因的分子特征及其对dmrt1a的表达调控

    MOLECULAR CHARACTERIZATION OF THE SOX9A GENE AND ITS REGULATORY EFFECT ON DMRT1A EXPRESSION IN YELLOW DRUM (NIBEA ALBIFLORA)

    • 摘要: 为探究sox9a基因在黄姑鱼(Nibea albiflora)性腺分化中的功能及其对dmrt1a基因的调控作用, 本研究克隆了黄姑鱼sox9a基因的CDS序列, 并对其分子特征与调控功能进行了分析。通过qRT-PCR检测发现, 在性别决定关键时期(36 dph), sox9a在雌雄性腺中的表达无显著差异, 而在55 dph和61 dph, sox9a在雄性性腺中的表达显著高于雌性(P<0.01)。分子对接和动力学模拟提示Sox9a可能调控dmrt1a表达。进一步利用双荧光素酶报告系统与点突变技术, 在CHO和293T细胞中验证发现, Sox9a可增强dmrt1a_Luc的转录活性, 且对Y染色体上dmrt1a_Luc的促进作用强于X染色体; 随着Sox9a浓度升高, 其促进作用有所下降。将X染色体dmrt1a基因Intron1中45 bp插入片段内的Sox9a结合位点突变后, 突变体Pro_Intron1(X_Mu)驱动dmrt1a_Luc转录的活性显著高于野生型, 说明该Sox9a结合位点在dmrt1a转录调控中发挥重要作用。本研究加深了对Sox9a在黄姑鱼精巢分化中功能的理解, 并为揭示其性别决定和分化的分子机制提供了重要依据。

       

      Abstract: To explore the function of the sox9a gene in gonadal differentiation of yellow drum and its regulatory effect on the dmrt1a gene, we cloned the CDS sequence of sox9a and analyzed its molecular characteristics and regulatory functions. The results of qRT-PCR detection showed there was no significant difference in its expression between male and female during the critical period of sex determination (36 dph), while at 55 days post hatching (dph) and 61 dph, the expression of sox9a in males was significantly higher than that in female (P<0.01). Molecular docking and molecular dynamics simulation suggested that Sox9a might regulate the expression of dmrt1a. Furthermore, the dual-luciferase reporter assay system and site-directed mutagenesis technology were employed to detect the regulatory role of Sox9a on dmrt1a gene expression in CHO and 293T cells. The results demonstrated that Sox9a could enhance the transcriptional activity of dmrt1a_Luc, and its promoting effect on dmrt1a_Luc located on the Y chromosome was stronger than that on the X chromosome; with the increase in Sox9a concentration, its ability to promote the transcriptional expression of dmrt1a_Luc decreased accordingly. Mutation of the Sox9a binding site within the 45 bp insertion fragment in Intron 1 of dmrt1a gene on the X chromosome resulted in significantly higher transcriptional activity of the mutant Pro_Intron1 (X_Mu) construct compared to the wild type, indicating this Sox9a binding site plays an important role in the transcriptional regulation of dmrt1a. This study enhances the understanding of the role of Sox9a in testicular differentiation of yellow drum and provides important insights for elucidating the molecular mechanisms underlying sex determination and differentiation in this species.

       

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