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mRNA和miRNA的综合图谱揭示了猪多器官生理和发育的分子特征。

Comprehensive Profiles of mRNAs and miRNAs Reveal Molecular Characteristics of Multiple Organ Physiologies and Development in Pigs.

作者信息

Chen Muya, Yao Yi Long, Yang Yalan, Zhu Min, Tang Yijie, Liu Siyuan, Li Kui, Tang Zhonglin

机构信息

Research Centre for Animal Genome, Agricultural Genome Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, China.

Genome Analysis Laboratory of the Ministry of Agriculture, Agricultural Genome Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, China.

出版信息

Front Genet. 2019 Aug 28;10:756. doi: 10.3389/fgene.2019.00756. eCollection 2019.

Abstract

The pig () is not only an important livestock animal but also widely used as a biomedical model. However, the understanding of the molecular characteristics of organs and of the developmental skeletal muscle of the pig is severely limited. Here, we performed a comprehensive transcriptome profiling of mRNAs and miRNAs across nine tissues and three skeletal muscle developmental stages in the Guizhou miniature pig. The reproductive organs (ovary and testis) had greater transcriptome complexity and activity than other tissues, and the highest transcriptome similarity was between skeletal muscle and heart ( = 0.79). We identified 1,819 mRNAs and 96 miRNAs to be tissue-specific in nine organs. Testis had the largest number of tissue-specific mRNAs (992) and miRNAs (40). Only 15 genes and two miRNAs were specifically expressed in skeletal muscle and fat, respectively. During postnatal skeletal muscle development, the mRNAs associated with focal adhesion, Notch signaling, protein digestion, and absorption pathways were up-regulated from D0 to D30 and then down-regulated from D30 and D240, while genes with opposing expression patterns were significantly enriched in the oxidative phosphorylation and proteasome pathways. The miRNAs mainly regulated genes associated with insulin, Wnt, fatty acid biosynthesis, Notch, MAPK, TGF-beta, insulin secretion, ECM-receptor interaction, focal adhesion, and calcium signaling pathways. We also identified 37 new miRNA-mRNA interaction pairs involved in skeletal muscle development. Overall, our data not only provide a rich resource for understanding pig organ physiology and development but also aid the study of the molecular functions of mRNA and miRNA in mammals.

摘要

猪不仅是一种重要的家畜,还被广泛用作生物医学模型。然而,对猪的器官分子特征以及发育中的骨骼肌的了解非常有限。在此,我们对贵州小型猪的九个组织和三个骨骼肌发育阶段的mRNA和miRNA进行了全面的转录组分析。生殖器官(卵巢和睾丸)的转录组复杂性和活性高于其他组织,骨骼肌和心脏之间的转录组相似性最高(=0.79)。我们在九个器官中鉴定出1819个mRNA和96个miRNA具有组织特异性。睾丸具有最多的组织特异性mRNA(992个)和miRNA(40个)。分别只有15个基因和两个miRNA在骨骼肌和脂肪中特异性表达。在出生后骨骼肌发育过程中,与粘着斑、Notch信号、蛋白质消化和吸收途径相关的mRNA从D0到D30上调,然后从D30到D240下调,而具有相反表达模式的基因在氧化磷酸化和蛋白酶体途径中显著富集。miRNA主要调节与胰岛素、Wnt、脂肪酸生物合成、Notch、MAPK、TGF-β、胰岛素分泌、ECM-受体相互作用、粘着斑和钙信号通路相关的基因。我们还鉴定出37个参与骨骼肌发育的新的miRNA-mRNA相互作用对。总体而言,我们的数据不仅为理解猪器官生理学和发育提供了丰富的资源,也有助于研究哺乳动物中mRNA和miRNA的分子功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cac/6737989/ba0581780e61/fgene-10-00756-g001.jpg

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