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Transcriptomic analysis reveals critical genes for the hair follicle of Inner Mongolia cashmere goat from catagen to telogen

机译:转录组学分析揭示了内蒙古绒山羊从毛发生长到毛发生长的关键基因

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摘要

There are two main types of hair follicle in Inner Mongolia Cashmere goats, the primary hair follicle (PHF) producing hair fibers and the secondary hair follicle (SHF) producing cashmere fibers. Of both fibers from cashmere-bearing goats in Aerbasi, Inner Mongolia, the timing of cyclical phases for the cashmere have been well clarified but hair fibers have been less noticeable. Herein, we evaluated transcriptome of PHF and SHF from the same three goats in Aerbasi at the catagen- and telogen phase of cashmere growth. We totally found 1977 DEGs between PHFs at the telogen and catagen phases of SHF, 1199 DEGs between telogen- and catagen SHF, 2629 DEGs between PHF at the catagen phase of SHF and catagen SHF, and 755 DEGs between PHF at the telogen phase of SHF and telogen SHF. By analyzing gene functions based on GO and KEGG database, we found that the DEGs have functions in muscle contraction and muscle filament sliding between catagen- and telogen SHF, indicating that arrector pilli muscles might play a role on the transition from catagen to telogen. Moreover, considering that the enriched GO and KEGG categories of the DEGs between PHF and SHF, we suggested that part of PHF might rest in their own anagen phase when SHF are at catagen, but PHF might enter into the telogen phase at SHF’s telogen. Finally, we highly recommended the several potential genes acting as the regulators of the transition between growth phases including IL17RB and eight members of ZNF. These results provide insight into molecular mechanisms on the transition of SHF from catagen to telogen together with PHF’s growth situation at SHF’s catagen and telogen in Inner Mongolia Cashmere goats.
机译:内蒙古羊绒山羊的毛囊有两种主要类型,主要的毛囊(PHF)产生毛发纤维和次要的毛囊(SHF)产生羊绒纤维。在来自内蒙古阿尔巴斯的含绒山羊的两种纤维中,羊绒的循环阶段的时间安排已经很清楚,但毛纤维不太明显。在本文中,我们评估了羊绒生长的催化期和端源期时,来自阿尔贝西相同三只山羊的PHF和SHF的转录组。我们共发现SHF的telogen和catagen阶段的PHF之间有1977个DEG,SHF的telogen和catagen之间有1199个DEG,SHF的SHF和sgen的PHF之间有2629个SHF,SHF的telogen阶段的PHF之间的755 DEG之间。和telogen SHF。通过基于GO和KEGG数据库的基因功能分析,我们发现DEGs具有在雄性和静止期SHF之间的肌肉收缩和肌丝滑动的功能,这表明绒毛直肌可能在从原发到静止期的过渡中起作用。此外,考虑到PHF和SHF之间DEG的GO和KEGG种类丰富,我们建议当SHF处于触媒状态时,部分PHF可能处于其自身的生长期,而PHF可能会在SHF的telogen进入休止期。最后,我们强烈推荐几种可能的基因作为生长相之间的过渡调控因子,包括IL17RB和ZNF的八个成员。这些结果为深入了解内蒙古绒山羊山羊SHF从触媒过渡到端粒的分子机制,以及PHF在SHF触媒和端粒的生长情况。

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