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The Regulatory Role of miRNAs in Zebrafish Fin Regeneration

机译:miRNA 在斑马鱼鳍再生中的调控作用

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摘要

Since Teleostei fins have a strong regenerative capacity, further research was conducted on the regulation of gene expression during fin regeneration. This research focuses on miRNA, which is a key post-transcriptional regulatory molecule. In this study, a miRNA library for the fin regeneration of zebrafish was constructed to reveal the differential expression of miRNA during fin regeneration and to explore the regulatory pathway for fin regeneration. Following the injection of miRNA agomir into zebrafish, the proliferation of blastema cells and the overall fin regeneration area were significantly reduced. It was observed that the miRNAs impaired blastocyte formation by affecting fin regeneration through the inhibition of the expressions of genes and proteins associated with blastocyte formation (including yap1 and Smad1/5/9), which is an effect associated with the Hippo pathway. Furthermore, it has been demonstrated that miRNAs can impair the patterns and mineralization of newly formed fin rays. The miRNAs influenced fin regeneration by inhibiting the expression of a range of bone-related genes and proteins in osteoblast lineages, including sp7, runx2a, and runx2b. This study provides a valuable reference for the further exploration of morphological bone reconstruction in aquatic vertebrates.
机译:由于 Teleostei 鳍具有很强的再生能力,因此对鳍再生过程中基因表达的调节进行了进一步的研究。本研究的重点是 miRNA,这是一种关键的转录后调节分子。本研究构建了斑马鱼鳍再生的 miRNA 文库,揭示了鳍再生过程中 miRNA 的差异表达,并探索了鳍再生的调控途径。将 miRNA agomir 注射到斑马鱼体内后,胚芽细胞的增殖和整体鳍再生面积显着降低。据观察,miRNA 通过抑制与芽细胞形成相关的基因和蛋白质(包括 yap1 和 Smad1/5/9)的表达来影响鳍再生,从而损害囊胚细胞形成,这是与 Hippo 通路相关的作用。此外,已经证明 miRNA 可以损害新形成的鳍条的模式和矿化。miRNA 通过抑制成骨细胞谱系中一系列骨相关基因和蛋白质的表达来影响鳍再生,包括 sp7、runx2a 和 runx2b。本研究为进一步探索水生脊椎动物的形态学骨重建提供了有价值的参考。

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