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The seasonal development dynamics of the yak hair cycle transcriptome

机译:牦牛头发循环转录组的季节发展动态

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Mammalian hair play an important role in mammals’ ability to adapt to changing climatic environments. The seasonal circulation of yak hair helps them adapt to high altitude but the regulation mechanisms of the proliferation and differentiation of hair follicles (HFs) cells during development are still unknown. Here, using time series data for transcriptome and hormone contents, we systematically analyzed the mechanism regulating the periodic expression of hair development in the yak and reviewed how different combinations of genetic pathways regulate HFs development and cycling. This study used high-throughput RNA sequencing to provide a detailed description of global gene expression in 15 samples from five developmental time points during the yak hair cycle. According to clustering analysis, we found that these 15 samples could be significantly grouped into three phases, which represent different developmental periods in the hair cycle. A total of 2316 genes were identified in these three consecutive developmental periods and their expression patterns could be divided into 9 clusters. In the anagen, genes involved in activating hair follicle growth are highly expressed, such as the WNT pathway, FGF pathway, and some genes related to hair follicle differentiation. In the catagen, genes that inhibit differentiation and promote hair follicle cell apoptosis are highly expressed, such as BMP4, and Wise. In the telogen, genes that inhibit hair follicle activity are highly expressed, such as DKK1 and BMP1. Through co-expression analysis, we revealed a number of modular hub genes highly associated with hormones, such as SLF2, BOP1 and DPP8. They may play unique roles in hormonal regulation of events associated with the hair cycle. Our results revealed the expression pattern and molecular mechanisms of the seasonal hair cycle in the yak. The findings will be valuable in further understanding the alpine adaptation mechanism in the yak, which is important in order to make full use of yak hair resources and promote the economic development of pastoral plateau areas.
机译:哺乳动物在哺乳动物的能力适应变化气候环境中发挥着重要作用。牦牛头发的季节性循环有助于它们适应高海拔,但发育过程中毛囊(HFS)细胞的增殖和分化的调节机制仍然未知。这里,使用时间序列数据用于转录组和激素含量,我们系统地分析了调节牦牛头发发育的周期性表达的机制,并审查了遗传途径的不同组合调节了HFS开发和循环。该研究使用了高通量RNA测序,以在牦牛头发循环期间的五个发育时间点的15个样品中提供全局基因表达的详细描述。根据聚类分析,我们发现这些15个样品可以显着分为三个阶段,这在三个阶段中表示毛发周期中的不同发育期。在这三个连续发育期间,总共鉴定了2316个基因,并且它们的表达模式可分为9个簇。在Anagen中,参与激活毛囊生长的基因非常表达,例如Wnt途径,FGF途径和与毛囊分化有关的一些基因。在Caragen中,抑制分化和促进毛囊细胞凋亡的基因高度表达,例如BMP4和明智。在遥远的中,抑制毛囊活性的基因高度表达,例如DKK1和BMP1。通过共表达分析,我们揭示了许多与激素高度相关的模块化中心基因,例如SLF2,BOP1和DPP8。它们可能在与头发周期相关的事件的激素调节中起着独特的作用。我们的结果揭示了牦牛季节发循环的表达模式和分子机制。该研究结果将进一步了解牦牛的高山适应机制,这是为了充分利用牦牛发资源,促进田园高原地区的经济发展。

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