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绵羊 miRNA 组学:21 种组织中 miRNAs 的特征和分布。

The sheep miRNAome: Characterization and distribution of miRNAs in 21 tissues.

机构信息

Department of Genetics, Physical Anthropology and Animal Physiology, Faculty of Science and Technology, University of the Basque Country (UPV/EHU), Leioa, Spain.

出版信息

Gene. 2023 Jan 30;851:146998. doi: 10.1016/j.gene.2022.146998. Epub 2022 Oct 22.

Abstract

MicroRNAs (miRNAs) are evolutionarily conserved small non-coding RNAs that regulate gene expression. In livestock species, miRNAs also show great potential as biomarkers for animal health and product quality. In sheep, few miRNAs have been described in comparison with other livestock species or model organisms. We uniformly analyzed 172 public ovine small RNA sequencing datasets from 21 different tissues in order to predict conserved and novel miRNA precursors and profile their expression patterns. In addition to the 106 annotated sheep miRNAs, 1047 previously unannotated miRNA precursor sequences were detected and 41 % of them were assigned an orthologue from other close species. Considering expression levels, a set of miRNAs with high sequence conservation were detected in all tissues, while 733 mature miRNAs were robustly expressed in at least one tissue. 270 miRNAs showed high tissue specificity index values. Brain, male reproductive tissues and PBMCs showed the most distinct expression patterns. Strikingly, over one hundred precursors from the ruminant specific family of mir-2284/mir-2285 miRNAs were found, which were enriched in immune related tissues. This work supports the known high conservation of many miRNAs, but also highlights the potential of clade-specific innovations in ruminant evolution.

摘要

微小 RNA(miRNA)是进化上保守的小非编码 RNA,可调节基因表达。在畜牧物种中,miRNA 也具有作为动物健康和产品质量生物标志物的巨大潜力。与其他畜牧物种或模式生物相比,绵羊中描述的 miRNA 较少。我们统一分析了来自 21 种不同组织的 172 个公共绵羊小 RNA 测序数据集,以预测保守和新型 miRNA 前体并分析其表达模式。除了 106 个已注释的绵羊 miRNA 外,还检测到了 1047 个以前未注释的 miRNA 前体序列,其中 41%被分配到其他密切相关的物种的同源物。考虑到表达水平,在所有组织中都检测到了一组具有高序列保守性的 miRNA,而在至少一种组织中稳健表达的成熟 miRNA 有 733 个。270 个 miRNA 表现出高组织特异性指数值。大脑、男性生殖组织和 PBMC 表现出最独特的表达模式。值得注意的是,从反刍动物特异性 mir-2284/miR-2285 miRNA 家族中发现了超过 100 个前体,它们在免疫相关组织中富集。这项工作支持了许多 miRNA 高度保守的已知事实,但也突出了反刍动物进化中特定进化枝创新的潜力。

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