1,887
Views
26
CrossRef citations to date
0
Altmetric
Research Paper

Melatonin promotes Cashmere goat (Capra hircus) secondary hair follicle growth: a view from integrated analysis of long non-coding and coding RNAs

ORCID Icon, , , , ORCID Icon, & show all
Pages 1255-1267 | Received 05 Mar 2018, Accepted 23 Apr 2018, Published online: 17 Jul 2018

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Mingliang He, Hui Zhou, Tingyan Hu, Xiaoyang Lv, Shanhe Wang, Xiukai Cao, Zehu Yuan, Kai Quan, Tesfaye Getachew, Joram M. Mwacharo, Aynalem Haile & Wei Sun. (2022) Preliminary study of melatonin in the proliferation and apoptosis of Hu sheep dermal papilla cells in vitro. Animal Biotechnology 0:0, pages 1-9.
Read now
Qian Jiao, Yan R. Wang, Jun Y. Zhao, Ze Y. Wang, Dan Guo & Wen L. Bai. (2021) Identification and molecular analysis of cashmere goat lncRNAs reveal their integrated regulatory network and potential roles in secondary hair follicle. Animal Biotechnology 32:6, pages 719-732.
Read now
Jun Piao, Chun-Ling Xu, Jing-Ai Piao, Ming Cao, Nan Huang & Mei Jin. (2020) Expression analysis of proteasome maturation protein (POMP) gene in Liaoning Cashmere goat. Animal Biotechnology 31:4, pages 324-334.
Read now
Yuanyuan Zheng, Zeying Wang, Yubo Zhu, Wei Wang, Man Bai, Qian Jiao, Yanru Wang, Sujun Zhao, Xianbo Yin, Dan Guo & Wenlin Bai. (2020) LncRNA-000133 from secondary hair follicle of Cashmere goat: identification, regulatory network and its effects on inductive property of dermal papilla cells. Animal Biotechnology 31:2, pages 122-134.
Read now

Articles from other publishers (22)

Cuiling Wu, Qin Xu, Jianying Li, Chongkai Qin, Hanikezi Tulafu, Wenna Liu, Qingwei Lu, Wenxin Zheng & Xuefeng Fu. (2023) Regulation of cashmere fineness traits by noncoding RNA in Jiangnan cashmere goats. BMC Genomics 24:1.
Crossref
Niu WANG, Wei-dong ZHANG, Zhen-yu ZHONG, Xiong-bo ZHOU, Xin-ran SHI & Xin WANG. (2023) FGF7 secreted from dermal papillae cell regulates the proliferation and differentiation of hair follicle stem cell1. Journal of Integrative Agriculture.
Crossref
Dehong Tian, Buying Han, Xue Li, Dehui Liu, Baicheng Zhou, Chunchuan Zhao, Nan Zhang, Lei Wang, Quanbang Pei & Kai Zhao. (2023) Genetic diversity and selection of Tibetan sheep breeds revealed by whole-genome resequencing. Animal Bioscience 36:7, pages 991-1002.
Crossref
Bin Liu, Ruoyang Zhao, Tiecheng Wu, Yuejun Ma, Yulin Gao, Yahan Wu, Bayasihuliang Hao, Jun Yin & Yurong Li. (2023) Transcriptomes reveal microRNAs and mRNAs in different photoperiods influencing cashmere growth in goat. PLOS ONE 18:3, pages e0282772.
Crossref
Xiaogao Diao, Lingyun Yao, Xinhui Wang, Sen Li, Jiaxin Qin, Lu Yang, Liwen He & Wei Zhang. (2023) Hair Follicle Development and Cashmere Traits in Albas Goat Kids. Animals 13:4, pages 617.
Crossref
Xiaogao Diao, Chunhui Duan, Lingyun Yao, Jiaxin Qin, Liwen He & Wei Zhang. (2023) Melatonin Promotes the Development of Secondary Hair Follicles in Adult Cashmere Goats by Activating the Keap1-Nrf2 Signaling Pathway and Inhibiting the Inflammatory Transcription Factors NFκB and AP-1. International Journal of Molecular Sciences 24:4, pages 3403.
Crossref
Liyan Hu, Jiqing Wang, Yuzhu Luo, Xiu Liu, Shaobin Li, Zhiyun Hao, Fangfang Zhao, Mingna Li, Bingang Shi & Yuanhua Gu. (2023) Identification and Characterization of Circular RNAs (circRNAs) Using RNA-Seq in Two Breeds of Cashmere Goats. Genes 14:2, pages 331.
Crossref
Wen‐Xiang Liu, Shao‐Jing Tan, Yu‐Feng Wang, Fa‐Li Zhang, Yu‐Qing Feng, Wei Ge, Paul W. Dyce, Russel J. Reiter, Wei Shen & Shun‐Feng Cheng. (2022) Melatonin promotes the proliferation of primordial germ cell‐like cells derived from porcine skin‐derived stem cells: A mechanistic analysis. Journal of Pineal Research 73:4.
Crossref
Cuiling Wu, Chongkai Qin, Xuefeng Fu, Xixia Huang & Kechuan Tian. (2022) Integrated analysis of lncRNAs and mRNAs by RNA-Seq in secondary hair follicle development and cycling (anagen, catagen and telogen) of Jiangnan cashmere goat (Capra hircus). BMC Veterinary Research 18:1.
Crossref
Junyang Liu, Qing Mu, Zhihong Liu, Yan Wang, Jiasen Liu, Zixian Wu, Wendian Gong, Zeyu Lu, Feifei Zhao, Yanjun Zhang, Ruijun Wang, Rui Su, Jinquan Li, Hongmei Xiao & Yanhong Zhao. (2021) Melatonin Regulates the Periodic Growth of Cashmere by Upregulating the Expression of Wnt10b and β-catenin in Inner Mongolia Cashmere Goats. Frontiers in Genetics 12.
Crossref
Weidong Zhang, Niu Wang, Tongtong Zhang, Meng Wang, Wei Ge & Xin Wang. (2021) Roles of Melatonin in Goat Hair Follicle Stem Cell Proliferation and Pluripotency Through Regulating the Wnt Signaling Pathway. Frontiers in Cell and Developmental Biology 9.
Crossref
Lechao Zhang, Chunhui Duan, Yunxia Guo, Yingjie Zhang & Yueqin Liu. (2021) Inhibition of prolactin promotes secondary skin follicle activation in cashmere goats. Journal of Animal Science 99:4.
Crossref
C.H. Yang, C.H. Duan, Z.Y. Wu, Y. Li, Y.Y. Luan, X.J. Fu, C.X. Zhang & W. Zhang. (2021) Effects of melatonin administration to cashmere goats on cashmere production and hair follicle characteristics in two consecutive cashmere growth cycles. Domestic Animal Endocrinology 74, pages 106534.
Crossref
Ranran Zhao, Nan Liu, Fuhui Han, Hegang Li, Jifeng Liu, Lanlan Li, Guoyi Wang & Jianning He. (2020) Identification and characterization of circRNAs in the skin during wool follicle development in Aohan fine wool sheep. BMC Genomics 21:1.
Crossref
Xiaolan Zhang, Qi Bao, Congjun Jia, Chen Li, Yongfang Chang, Xiaoyun Wu, Chunnian Liang, Pengjia Bao & Ping Yan. (2020) Genome-wide detection and sequence conservation analysis of long non-coding RNA during hair follicle cycle of yak. BMC Genomics 21:1.
Crossref
Xuefeng Fu, Bingru Zhao, Kechuan Tian, Yujiang Wu, Langda Suo, Gui Ba, Deji Ciren, Ji De, Cuoji Awang, Shuangbao Gun & Bohui Yang. (2020) Integrated analysis of lncRNA and mRNA reveals novel insights into cashmere fineness in Tibetan cashmere goats. PeerJ 8, pages e10217.
Crossref
Meilin Jin, Jian Lu, Xiaojuan Fei, Zengkui Lu, Kai Quan, Yongbin Liu, Mingxing Chu, Ran Di, Huihua Wang & Caihong Wei. (2020) Genetic Signatures of Selection for Cashmere Traits in Chinese Goats. Animals 10:10, pages 1905.
Crossref
Rong H. Yin, Yan R. Wang, Su J. Zhao, Rong L. Yin, Man Bai, Ze Y. Wang, Yu B. Zhu, Yu Y. Cong, Hai Y. Liu & Wen L. Bai. (2020) LncRNA-599554 sponges miR-15a-5p to contribute inductive ability of dermal papilla cells through positive regulation of the expression of Wnt3a in cashmere goat. Electronic Journal of Biotechnology 45, pages 19-29.
Crossref
Shanhe Wang, Fang Li, Jinwang Liu, Yuelang Zhang, Yujie Zheng, Wei Ge, Lei Qu & Xin Wang. (2020) Integrative Analysis of Methylome and Transcriptome Reveals the Regulatory Mechanisms of Hair Follicle Morphogenesis in Cashmere Goat. Cells 9:4, pages 969.
Crossref
Bai Dai, Hao Liang, Dong-dong Guo, Zhao-wei Bi, Jian-long Yuan, Yong Jin, Lei Huan, Xu-dong Guo, Ming Cang & Dong-jun Liu. (2019) The Overexpression of Tβ4 in the Hair Follicle Tissue of Alpas Cashmere Goats Increases Cashmere Yield and Promotes Hair Follicle Development. Animals 10:1, pages 75.
Crossref
Bai Dai, Meng Zhang, Jian-Long Yuan, Li-Qing Ren, Xiao-Yu Han & Dong-Jun Liu. (2019) Integrative Analysis of Methylation and Transcriptional Profiles to Reveal the Genetic Stability of Cashmere Traits in the Tβ4 Overexpression of Cashmere Goats. Animals 9:12, pages 1002.
Crossref
Yuan Y. Zheng, Sheng D. Sheng, Tai Y. Hui, Chang Yue, Jia M. Sun, Dan Guo, Su L. Guo, Bo J. Li, Hui L. Xue, Ze Y. Wang & Wen L. Bai. (2019) An Integrated Analysis of Cashmere Fineness lncRNAs in Cashmere Goats. Genes 10:4, pages 266.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.