miR-139555及其靶基因PtNBC在三疣梭子蟹适应盐度胁迫中的表达调控

THE ROLE OF MIR-139555 AND ITS TARGET GENE PtNBC IN PORTUNUS TRITUBERCULATUS IN SALINITY STRESS

  • 摘要: 为研究miR-139555及其潜在靶基因PtNBC(碳酸氢钠协同转运基因)在三疣梭子蟹(Portunus trituberculatus)适应盐度胁迫中的表达调控分析, 利用RACE技术克隆了PtNBC基因, 该基因全长5308 bp, 开放阅读框(ORF)3570 bp, 共编码 1189个氨基酸。利用RT-PCR技术分析miR-139555和PtNBC基因在三疣梭子蟹不同组织及低盐胁迫(11)下的表达规律。组织表达分布结果显示, miR-139555和PtNBC基因均在三疣梭子蟹鳃组织中表达量最高, 与其他组织相比, 有显著差异(P<0.05)。体外双荧光素酶实验表明, miR-139555能够显著抑制PtNBC基因的表达(P<0.001)。低盐胁迫显著影响了miR-139555和PtNBC基因的表达, 且两者间的表达趋势呈现明显的负相关。在低盐胁迫后, miR-139555整体呈现上调表达的趋势且在48h达到最大值, 为对照组的4.9倍(P<0.05), 而PtNBC基因呈现显著下调表达的趋势且各时间点表达量均低于对照组, 在12h表达量最低, 为对照组的0.06倍(P<0.05)。研究结果证明了PtNBC基因是miR-139555的靶基因, miR-139555可能通过调控鳃上皮细胞PtNBC基因的表达发挥重要的渗透压调节功能。

     

    Abstract: The internal osmotic pressure of Portunus trituberculatus is susceptible to changes of water salinity, which affects its growth, development, and reproduction. This study explored miR-139555 and its potential target gene PtNBC (sodium bicarbonate co-transporter gene) in Portunus trituberculatus adapted to salinity stress. The PtNBC gene was cloned using RACE technology. The full length of cDNA was 5308 bp with the ORF of 3570 bp, encoding for 1189 amino acids. PCR results indicated that both miR-139555 and PtNBC genes were expressed in all tissues of P. trituberculatus with the highest expression in the gill tissue (P<0.05). The results of dual luciferase assay showed that miR-139555 can significantly inhibit the expression of PtNBC gene (P<0.001). Low salinity stress significantly affected the expression of miR-139555 and PtNBC genes, and the expression trend was significantly negatively correlated. Under low-salinity stress, miR-139555 showed an overall upward-regulated expression trend, reaching the maximum at 48h, which was 4.9 times higher than that of the control group (P<0.05); while PtNBC gene showed a significant downward-regulated expression trend and the expression level was lower than the control group at all time points with the lowest value at 12h, which was 0.06 times lower than that of the control group (P<0.05). Our results proved that PtNBC gene is the target gene of miR-139555, and miR-139555 may play an important osmotic pressure regulation function by regulating PtNBC gene in gill epithelial cells.

     

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