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Integrated Analysis of the Roles of Long Noncoding RNA and Coding RNA Expression in Sheep (Ovis aries) Skin during Initiation of Secondary Hair Follicle

机译:次级毛囊启动过程中长(非编码)RNA和编码RNA表达在绵羊(绵羊)皮肤中的作用的综合分析

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摘要

Initiation of hair follicle (HF) is the first and most important stage of HF morphogenesis. However the precise molecular mechanism of initiation of hair follicle remains elusive. Meanwhile, in previous study, the more attentions had been paid to the function of genes, while the roles of non-coding RNAs (such as long noncoding RNA and microRNA) had not been described. Therefore, the roles of long noncoding RNA(LncRNA) and coding RNA in sheep skin during the initiation of sheep secondary HF were integrated and analyzed, by using strand-specific RNA sequencing (ssRNA-seq).A total of 192 significant differentially expressed genes were detected, including 67 up-regulated genes and 125 down-regulated genes between stage 0 and stage 1 of HF morphogenesis during HF initiation. Only Wnt2, FGF20 were just significant differentially expressed among Wnt, Shh, Notch and BMP signaling pathways. Further expression profile analysis of lncRNAs showed that 884 novel lncRNAs were discovered in sheep skin expression profiles. A total of 15 lncRNAs with significant differential expression were detected, 6 up-regulated and 9 down-regulated. Among of differentially expressed genes and LncRNA, XLOC002437 lncRNA and potential target gene COL6A6 were all significantly down-regulated in stage 1. Furthermore, by using RNAhybrid, XLOC005698 may be as a competing endogenous RNA ‘‘sponges” oar-miR-3955-5p activity. Gene Ontology and KEGG pathway analyses indicated that the significantly enriched pathway was peroxisome proliferator-activated receptors (PPARs) pathway (corrected P-value < 0.05), indicating that PPAR pathway is likely to play significant roles during the initiation of secondary HF.Results suggest that the key differentially expressed genes and LncRNAs may be considered as potential candidate genes for further study on the molecular mechanisms of HF initiation, as well as supplying some potential values for understanding human hair disorders.
机译:毛囊(HF)的启动是HF形态发生的第一个也是最重要的阶段。但是,开始毛囊的确切分子机制仍然难以捉摸。同时,在先前的研究中,人们对基因的功能给予了更多关注,而未描述非编码RNA(如长的非编码RNA和microRNA)的作用。因此,通过链特异性RNA测序(ssRNA-seq),对长非编码RNA(LncRNA)和编码RNA在绵羊次级HF引发期间在绵羊皮肤中的作用进行了整合和分析。总共192个显着差异表达的基因检测到包括HF启动过程中HF形态发生的0期和1期之间的67个上调基因和125个下调基因。在Wnt,Shh,Notch和BMP信号通路之间只有Wnt2,FGF20显着差异表达。 lncRNA的进一步表达谱分析表明,在绵羊皮肤表达谱中发现了884个新的lncRNA。总共检测到15个具有显着差异表达的lncRNA,6个上调和9个下调。在差异表达基因和LncRNA中,XLOC002437 lncRNA和潜在的靶基因COL6A6在第1阶段均被显着下调。此外,通过使用RNAhybrid,XLOC005698可能作为竞争性内源RNA“海绵” oar-miR-3955-5p活动。基因本体论和KEGG通路分析表明,显着富集的通路是过氧化物酶体增殖物激活受体(PPARs)通路(校正后的P值<0.05),这表明PPAR通路可能在继发性HF起始期间起重要作用。关键差异表达基因和LncRNAs可能被认为是潜在的候选基因,可用于进一步研究HF引发的分子机制,并为理解人的头发疾病提供一些潜在的价值。

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