The role of CTNNB1 and LEF1 in feather follicles development of Anser cygnoides and Anser anser

Background Wingless-types/beta-catenin (Wnt/β-catenin) signaling pathway is one of the most extensively studied transcriptional cascades involved in various types of organogenesis including embryonic and postnatal development. Downy feather quantity is primarily affected by follicular development an...

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Veröffentlicht in:Genes & genomics 2020, 42(7), , pp.761-771
Hauptverfasser: Sun, Yue, Zhou, Yuxuan, Msuthwana, Petunia, Liu, Jing, Liu, Chang, Sello, Cornelius Tlotliso, Song, Yupu, Feng, Ziqiang, Li, Shengyi, Yang, Wei, Xu, Yunpeng, Yan, Xiaomin, Li, Chuanghang, Sui, Yujian, Hu, Jingtao, Sun, Yongfeng
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Sprache:eng
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Zusammenfassung:Background Wingless-types/beta-catenin (Wnt/β-catenin) signaling pathway is one of the most extensively studied transcriptional cascades involved in various types of organogenesis including embryonic and postnatal development. Downy feather quantity is primarily affected by follicular development and gene regulations. Objective This research was aimed to investigate the role of catenin beta-1(CTNNB1) and lymphoid enhancerbinding factor-1 (LEF1) on feather follicles development at different developmental stages. Methods Fluorescence quantitative PCR, Western-blot and immunohistochemical methods were used in Anser cygnoides and Anser anser embryos (E12, E13 E18, and E28) and after birth gosling stages (G18, G48, G88) for gene expression analysis. Results CTNNB1 and LEF1 genes were expressed in Anser cygnoides and Anser anser at different embryonic and after-birth gosling developmental stages and the expression levels were significantly different in different stages (p 
ISSN:1976-9571
2092-9293
DOI:10.1007/s13258-020-00950-8