三角帆蚌Hc-inhba基因鉴定以及miR-9-5p对其调控作用

Identification of the Hc-inhba gene and its regulation by miR-9-5p in Hyriopsis cumingii

  • 摘要:
    目的 了解激活素蛋白在三角帆蚌中的作用,实验获得了三角帆蚌Hc-inhba的全长cDNA,并分析了Hc-inhba的表达模式,功能以及miR-9-5p对Hc-inhba的调控能力。
    方法 采用快速扩增cDNA末端技术克隆Hc-inhba的全长cDNA序列。利用实时荧光定量PCR (RT-qPCR) 分析Hc-inhba mRNA在三角帆蚌不同组织及性腺早期发育过程中的表达模式。通过RNA干扰技术敲降Hc-inhba表达,检测相关基因的表达变化;同时采用双荧光素酶报告实验以及注射miR-9-5p antagomir实验验证miR-9-5p在体内与体外对Hc-inhba的靶向调控作用。
    结果 Hc-inhba的全长cDNA包含241 bp 5′ UTR、670 bp 3′ UTR和1 182 bp的开放阅读框。实时荧光定量PCR结果显示,Hc-inhba在三角帆蚌6个组织中均有表达,除斧足外,其他组织中Hc-inhba表达量均有显著性差异。在性腺早期发育过程中,Hc-inhba表达量呈现先上升后下降的趋势,其中6月龄Hc-inhba表达量最高。在雌性性腺发育过程中Hc-inhba在生长期、成熟期和排放期表达量显著高于增殖期和休止期。RNA干扰结果显示,干扰后Hc-inhba相关基因表达量出现不同程度的下降。双荧光素酶实验结果显示转染了野生型载体和miR-9-5p模拟物的HEK293T细胞中萤火虫荧光素酶的活性显著下降,而突变型载体组则没有显著差异。在注射miR-9-5p antagomir后,在雌性和雄性中miR-9-5p的表达量均出现极显著下降,而Hc-inhba的表达量则极显著上升。
    结论 以上结果显示Hc-inhba可能在三角帆蚌性腺发育过程中扮演着重要角色,miR-9-5p拥有调控Hc-inhba的能力。本实验为了解三角帆蚌性腺发育机理提供新的理论基础,同时为实现三角帆蚌单性化养殖提供理论参考价值。

     

    Abstract: Inhibin subunit beta A (inhba) encodes the inhibin subunit beta A chain and plays an important regulatory role in animal reproductive function. To understand the role of inhba in the Hyriopsis cumingii, the full-length cDNA sequence of Hc-inhba was cloned using rapid amplification of cDNA ends (RACE). Real-time quantitative PCR (RT-qPCR) was performed to analyze the expression patterns of Hc-inhba mRNA in different tissues and during early gonadal development in H. cumingii. RNA interference (RNAi) was employed to knock down Hc-inhba expression, and the resulting changes in the expression of related genes were examined. Additionally, dual-luciferase reporter assays and miR-9-5p antagomir injection experiments were conducted to validate the targeting regulation of Hc-inhba by miR-9-5p both in vitro and in vivo, we obtained a full-length cDNA of Hc-inhba from the H. cumingii, which contains a 241 bp 5′ untranslated region, a 670 bp 3′ untranslated region. Multiple amino acid sequence comparisons and phylogenetic analyses indicated that Hc-inhba is closely related to mollusks. Real-time quantitative PCR results showed that Hc-inhba was expressed in all six tissues of H. cumingii. Except for the foot, the expression of Hc-inhba in all other tissues was significantly different (P < 0.05). During early gonadal development, the expression of Hc-inhba showed a trend of increasing and then decreasing, and the expression was significantly higher at the age of four to six months than at age of other months (P < 0.05), with the highest expression of Hc-inhba at the age of six months. During female gonadal development, the expression of Hc-inhba was significantly higher in the growth, maturation and discharge phases than in the proliferation and resting phases (P < 0.05), suggesting that Hc-inhba may be involved in oocyte maturation and ovulation. The results of RNA interference showed that both interfering strand 1 and interfering strand 2 had a certain interfering effect, with the highest interfering rate of 42% in females and 92% in males, and the expression of Hc-inhba-related genes showed different degrees of decrease after interference, predicting the regulatory effect of Hc-inhba. The results of dual luciferase assay showed a significant decrease in firefly luciferase activity in HEK293T cells transfected with wild-type vector and miR-9-5p mimic (P < 0.05), while there was no significant difference in the mutant vector group (P > 0.05). After injection of miR-9-5p antagomir, there was a highly significant decrease (P < 0.01) in the expression of miR-9-5p in both females and males, whereas the expression of Hc-inhba increased highly significantly (P < 0.01). The above results suggest that Hc-inhba may play an important role in the gonadal development of the sail mussel, and miR-9-5p possesses the ability to regulate Hc-inhba.

     

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