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Identification and Expression Profiling of miRNAome in Goat longissimus dorsi Muscle from Prenatal Stages to a Neonatal Stage

机译:从产前到新生儿阶段背长肌中miRNAome的鉴定和表达谱

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摘要

Skeletal muscle development is a complex biological process regulated by numerous genes and non-coding RNAs, such as microRNAs (miRNAs). In the current study, we made use of the deep sequencing data from Jianzhou Da’er goat longissimus dorsi sampled on days 45, 60, and 105 of gestation, as well as day three after birth to identify miRNAs that regulate goat skeletal myogenesis, and examine their temporal expression profiles. A total of 410 known goat miRNAs, 752 miRNA homologs and 88 novel miRNAs were identified across four stages. Besides three myomiRs, the abundance of 17 miRNAs, including chi-miR-424, chi-miR-542-3p and chi-miR-136-5p was more than 10,000 reads per million mapped reads (RPM), on average. Furthermore, 50 miRNAs with more than 100 RPM clustered at the imprinted DLK1–DIO3 locus on chromosome 21 and showed similar expression patterns, indicating that these miRNAs played important roles in skeletal myogenesis of goats. Based on pairwise comparisons, 221 differentially expressed (DE), known miRNAs were identified across four stages. GO and KEGG analyses of the genes targeted by the DE miRNAs revealed the significantly enriched processes and pathways to be consistent with temporal changes of skeletal muscle development across all sampled stages. However, follow-up experimental studies were required to explore functions of these miRNAs and targets underlying skeletal myogenesis.
机译:骨骼肌发育是一个复杂的生物过程,受许多基因和非编码RNA(例如microRNA(miRNA))调控。在本研究中,我们利用了在妊娠45、60和105天以及出生后第三天采样的建州大二山羊背最长肌的深度测序数据,来鉴定调节山羊骨骼肌发生的miRNA,以及检查他们的时间表达谱。在四个阶段中共鉴定出410种已知的山羊miRNA,752种miRNA同源物和88种新颖的miRNA。除了三个myomiRs外,包括chi-miR-424,chi-miR-542-3p和chi-miR-136-5p在内的17种miRNA的丰度平均为每百万个映射读取(RPM)超过10,000个读取。此外,具有超过100 RPM的50个miRNA聚集在21号染色体上的印记DLK1-DIO3基因座上,并显示出相似的表达模式,表明这些miRNA在山羊骨骼肌发生中起重要作用。基于成对比较,在四个阶段中鉴定出221个差异表达(DE)的已知miRNA。对DE miRNA靶向基因的GO和KEGG分析显示,丰富的过程和途径与所有采样阶段骨骼肌发育的时间变化一致。但是,需要进行后续的实验研究来探索这些miRNA的功能并靶向骨骼肌发生的基础。

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