Yuan Xiaochun, Meng Ke, Wang Yayan, Wang Yifan, Pan Cuili, Sun Haoran, Wang Jankui, Li Xinhai
College of Animal Science and Technology, Ningxia University, Yinchuan, China.
Beijing Key Laboratory of Animal Genetic Improvement, China Agricultural University, Beijing, China.
Front Vet Sci. 2024 Dec 11;11:1489379. doi: 10.3389/fvets.2024.1489379. eCollection 2024.
Dorper sheep is popular among farming enterprises with strong adaptability, disease resistance, and roughage tolerance, and an unique characteristic of natural shedding of wool. In a large number of observations on experimental sheep farms, it was found that the wool of some sheep still had not shed after May, thus manual shearing was required. Therefore, understanding the molecular mechanisms of normal hair follicles (HFs) development is crucial to revealing the improvement of sheep wool-related traits and mammalian skin-related traits. In this study, transcriptome analysis was performed on skin tissues of adult Dorper ewes in the shedding (S) and non-shedding (N) groups in September 2019, January 2020, and March 2020, respectively. The results identified 3,278 differentially expressed transcripts (DETs) in the three comparison groups within the S group, 720 DETs in the three comparison groups within the N group, and 1,342 DETs in the three comparison groups between the S--N groups. Time-series expression analysis revealed 2 unique expression patterns in HF development, namely, elevated expression in the anagen phase (A pattern) and the telogen phase (T pattern). DETs with stage-specific expression had a significant presence in processes related to the hair cycle and skin development, and several classic signaling pathways involved in sheep HF development, such as Rap1, estrogen, PI3K-Akt, and MAPK, were detected. Combined analysis of DETs, time-series expression data, and weighted gene co-expression network analysis identified core genes and their transcripts influencing HF development, such as , , , , , and . Additionally, alternative splicing analysis predicted that the isoforms XM_004004383.4 and XM_012125926.3 of might play a crucial role in sheep HF development. This study is a valuable resource for explaining the morphology of normal growth and development of sheep HFs and the genetic foundation of mammalian skin-related traits. It also offers potential insights into factors influencing human hair advancement.
杜泊羊在养殖企业中很受欢迎,它具有很强的适应性、抗病能力和耐粗饲能力,并且有羊毛自然脱落的独特特性。在实验羊场的大量观察中发现,一些绵羊的羊毛在5月之后仍未脱落,因此需要进行人工剪毛。因此,了解正常毛囊(HFs)发育的分子机制对于揭示绵羊羊毛相关性状和哺乳动物皮肤相关性状的改善至关重要。在本研究中,分别于2019年9月、2020年1月和2020年3月对处于脱毛(S)组和非脱毛(N)组的成年杜泊母羊的皮肤组织进行了转录组分析。结果在S组内的三个比较组中鉴定出3278个差异表达转录本(DETs),N组内的三个比较组中有720个DETs,S-N组之间的三个比较组中有1342个DETs。时间序列表达分析揭示了HF发育中的2种独特表达模式,即生长期(A模式)和休止期(T模式)表达升高。具有阶段特异性表达的DETs在与毛发生长周期和皮肤发育相关的过程中大量存在,并且检测到了一些参与绵羊HF发育的经典信号通路,如Rap1、雌激素、PI3K-Akt和MAPK。对DETs、时间序列表达数据和加权基因共表达网络分析的综合分析确定了影响HF发育的核心基因及其转录本,如 , , , , ,和 。此外,可变剪接分析预测 的异构体XM_004004383.4和XM_012125926.3可能在绵羊HF发育中起关键作用。本研究为解释绵羊HFs正常生长发育的形态以及哺乳动物皮肤相关性状的遗传基础提供了宝贵资源。它还为影响人类毛发进展的因素提供了潜在的见解。