Department of Animal and Poultry Science, College of Aburaihan, University of Tehran, Tehran, Iran.
Department of Animal Sciences, College of Agriculture, Isfahan University of Technology, Isfahan, Iran.
Sci Rep. 2024 Oct 31;14(1):26238. doi: 10.1038/s41598-024-76940-7.
Despite the scientific relevance of circular RNAs (circRNAs), the study of these RNAs in non-model organisms, especially in sheep, is still in its infancy. On the other hand, while some studies have focused on sheep circRNA identification in a limited number of tissues, there is a lack of comprehensive analysis that profile circRNA expression patterns across the tissues not yet investigated. In this study, 61 public RNA sequencing datasets from 12 different tissues were uniformly analyzed to identify circRNAs, profile their expression and investigate their various characteristics. We reported for the first time a circRNA expression landscape with functional annotation in sheep tissues not yet investigated including hippocampus, BonMarrowMacrophage, left-ventricle, thymus, ileum, reticulum and 23-day-embryo. A stringent computational pipeline was employed and 8919 exon-derived circRNAs with high confidence were identified, including 88 novel circRNAs. Tissue-specificity analysis revealed that 3059 circRNAs were tissue-specific, which were also more specific to the tissues than linear RNAs. The highest number of tissue-specific circRNAs was found in kidney, hippocampus and thymus, respectively. Co-expression analysis revealed that expression of circRNAs may not be affected by their host genes. While most of the host genes produced more than one isoform, only one isoform had dominant expression across the tissues. The host genes of the tissue-specific circRNAs were significantly enriched in biological/pathways terms linked to the important functions of their corresponding tissues, suggesting potential roles of circRNAs in modulating physiological activity of those tissues. Interestingly, functional terms related to the regulation and various signaling pathways were significantly enriched in all tissues, suggesting some common regulatory mechanisms of circRNAs to modulate the physiological functions of tissues. Finding of the present study provide a valuable resource for depicting the complexity of circRNAs expression across tissues of sheep, which can be useful for the field of sheep genomic and veterinary research.
尽管环状 RNA(circRNA)具有重要的科学意义,但在非模式生物(尤其是绵羊)中对这些 RNA 的研究仍处于起步阶段。另一方面,虽然一些研究集中在少数组织中鉴定绵羊 circRNA,但缺乏对尚未研究的组织中 circRNA 表达模式的全面分析。在这项研究中,我们统一分析了 12 种不同组织的 61 个公共 RNA 测序数据集,以鉴定 circRNA、分析其表达谱并研究其各种特征。我们首次报道了绵羊组织中环状 RNA 表达图谱的功能注释,包括尚未研究的海马体、骨髓巨噬细胞、左心室、胸腺、回肠、网状内皮系统和 23 天胚胎。我们采用了严格的计算管道,鉴定出 8919 个具有高可信度的外显子衍生 circRNA,包括 88 个新的 circRNA。组织特异性分析显示,3059 个 circRNA 具有组织特异性,其组织特异性也高于线性 RNA。在肾脏、海马体和胸腺中发现的组织特异性 circRNA 数量最多。共表达分析显示,circRNA 的表达可能不受其宿主基因的影响。虽然大多数宿主基因产生不止一种亚型,但只有一种亚型在所有组织中都有优势表达。组织特异性 circRNA 的宿主基因在与对应组织重要功能相关的生物学/通路术语中显著富集,这表明 circRNA 在调节这些组织生理活性方面可能发挥作用。有趣的是,与调控和各种信号通路相关的功能术语在所有组织中都显著富集,这表明 circRNA 存在一些共同的调节机制,以调节组织的生理功能。本研究的发现为描绘绵羊组织中 circRNA 表达的复杂性提供了有价值的资源,这对于绵羊基因组和兽医研究领域具有重要意义。