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Expressed miRNAs target feather related mRNAs involved in cell signaling cell adhesion and structure during chicken epidermal development

机译:表达的miRNA靶向鸡表皮发育过程中涉及细胞信号传导细胞粘附和结构的羽毛相关mRNA

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摘要

MicroRNAs (miRNAs) are small non-coding RNAs that regulate gene expression at the post-transcriptional level. Previous studies have shown that miRNA regulation contributes to a diverse set of processes including cellular differentiation and morphogenesis which leads to the creation of different cell types in multicellular organisms and is thus key to animal development. Feathers are one of the most distinctive features of extant birds and are important for multiple functions including flight, thermal regulation, and sexual selection. However, the role of miRNAs in feather development has been woefully understudied despite the identification of cell signaling pathways, cell adhesion molecules and structural genes involved in feather development. In this study, we performed a microarray experiment comparing the expression of miRNAs and mRNAs among three embryonic stages of development and two tissues (scutate scale and feather) of the chicken. We combined this expression data with miRNA target prediction tools and a curated list of feather related genes to produce a set of 19 miRNA-mRNA duplexes. These targeted mRNAs have been previously identified as important cell signaling and cell adhesion genes as well as structural genes involved in feather and scale morphogenesis. Interestingly, the miRNA target site of the cell signaling pathway gene, Aldehyde Dehydrogenase 1 Family, Member A3 (ALDH1A3), is unique to birds indicating a novel role in Aves. The identified miRNA target site of the cell adhesion gene, Tenascin C (TNC), is only found in specific chicken TNC splice variants that are differentially expressed in developing scutate scale and feather tissue indicating an important role of miRNA regulation in epidermal differentiation. Additionally, we found that β-keratins, a major structural component of avian and reptilian epidermal appendages, are targeted by multiple miRNA genes. In conclusion, our work provides quantitative expression data on miRNAs and mRNAs during feather and scale development and has produced a highly diverse, but manageable list of miRNA-mRNA duplexes for future validation experiments.
机译:MicroRNA(miRNA)是小的非编码RNA,可在转录后水平调节基因表达。先前的研究表明,miRNA调控可促进多种过程,包括细胞分化和形态发生,从而导致在多细胞生物中形成不同的细胞类型,因此是动物发育的关键。羽毛是现存鸟类最独特的特征之一,对于多种功能(包括飞行,温度调节和性选择)非常重要。然而,尽管已鉴定出参与羽毛发育的细胞信号传导途径,细胞粘附分子和结构基因,但miRNA在羽毛发育中的作用已被深入研究。在这项研究中,我们进行了微阵列实验,比较了鸡的三个胚胎发育阶段和两个组织(鳞片鳞片和羽毛)之间miRNA和mRNA的表达。我们将这种表达数据与miRNA靶标预测工具和羽毛相关基因的精选清单相结合,以产生一组19个miRNA-mRNA双链体。这些靶向的mRNA先前已被确定为重要的细胞信号传导和细胞粘附基因,以及参与羽毛和鳞片形态发生的结构基因。有趣的是,细胞信号通路基因醛脱氢酶1家族成员A3(ALDH1A3)的miRNA靶位点是鸟类特有的,表明在Aves中具有新的作用。仅在特定的鸡TNC剪接变体中发现了细胞粘附基因Tenascin C(TNC)的miRNA靶位点,这些变体在发育的鳞片鳞片和羽毛组织中差异表达,表明miRNA调控在表皮分化中具有重要作用。此外,我们发现β-角蛋白是禽类和爬虫类表皮附件的主要结构成分,被多个miRNA基因靶向。总之,我们的工作提供了羽毛和鳞片发育过程中miRNA和mRNA的定量表达数据,并产生了高度多样化但可管理的miRNA-mRNA双链体列表,以供将来进行验证实验。

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