Transcriptomic regulatory analysis of skeletal muscle development in landrace pigs

被引:1
作者
Yu, Mubin [1 ]
Feng, Yanqin [1 ]
Yan, Jiamao [1 ]
Zhang, Xiaoyuan [1 ]
Tian, Zhe [1 ]
Wang, Tao [1 ]
Wang, Junjie [1 ]
Shen, Wei [1 ]
机构
[1] Biotechnol Univ Shandong, Qingdao Agr Univ, Coll Life Sci, Key Lab Anim Reprod, Qingdao 266109, Peoples R China
关键词
Landrace; Skeletal muscle development; ceRNA; Transcriptome; RNA; GROWTH; CALCINEURIN; DIFFERENTIATION; REGENERATION; GLUTATHIONE; HOMOLOGS; FIBERS; CHAC1; NOGO;
D O I
10.1016/j.gene.2024.148407
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The development of pig skeletal muscle is a complex dynamic regulation process, which mainly includes the formation of primary and secondary muscle fibers, the remodeling of muscle fibers, and the maturation of skeletal muscle; However, the regulatory mechanism of the entire developmental process remains unclear. This study analyzed the whole-transcriptome data of skeletal muscles at 27 developmental nodes (E33-D180) in Landrace pigs, and their key regulatory factors in the development process were identified using the bioinformatics method. Firstly, we constructed a transcriptome expression map of skeletal muscle development from embryo to adulthood in Landrace pig. Subsequently, due to drastic change in gene expression, the perinatal periods including E105, D0 and D9, were focused, and the genes related to the process of muscle fiber remodeling and volume expansion were revealed. Then, though conjoint analysis with miRNA and lncRNA transcripts, a ceRNA network were identified, which consist of 11 key regulatory genes (such as CHAC1, RTN4IP1 and SESN1), 7 miRNAs and 43 lncRNAs, and they potentially play an important role in the process of muscle fiber differentiation, muscle fiber remodeling and volume expansion, intramuscular fat deposition, and other skeletal muscle developmental events. In summary, we reveal candidate genes and underlying molecular regulatory networks associated with perinatal skeletal muscle fiber type remodeling and expansion. These data provide new insights into the molecular regulation of mammalian skeletal muscle development and diversity.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] The Regulatory Role of CircAGGF1 in Myogenic Differentiation and Skeletal Muscle Development
    Hei, Wei
    Gong, Yuxuan
    Cai, Wenrun
    Li, Ruotong
    Chen, Jiayi
    Zhang, Wanfeng
    Ji, Mengting
    Li, Meng
    Yang, Yang
    Cai, Chunbo
    Guo, Xiaohong
    Li, Bugao
    ANIMALS, 2025, 15 (05):
  • [32] The emerging regulatory mechanisms and biological function of circular RNAs in skeletal muscle development
    Sun, Xiaomei
    Kang, Yan
    Li, Mingxun
    Li, Yongjun
    Song, Jiuzhou
    BIOCHIMICA ET BIOPHYSICA ACTA-GENE REGULATORY MECHANISMS, 2022, 1865 (08):
  • [33] Transcriptomic analysis elucidates the enhanced skeletal muscle mass, reduced fat accumulation, and metabolically benign liver in human follistatin-344 transgenic pigs
    Long Ke-ren
    Li Xiao-kai
    Zhang Ruo-wei
    Gu Yi-ren
    Du Min-jie
    Xing Xiang-yang
    Du Jia-xiang
    Mai Miao-miao
    Wang Jing
    Jin Long
    Tang Qian-zi
    Hu Si-lu
    Ma Ji-deng
    Wang Xun
    Pan Deng-ke
    Li Ming-zhou
    JOURNAL OF INTEGRATIVE AGRICULTURE, 2022, 21 (09) : 2675 - 2690
  • [34] Analysis of long intergenic non-coding RNAs transcriptomic profiling in skeletal muscle growth during porcine embryonic development
    Zhao, Wenjuan
    Li, Zijing
    Liu, Quan
    Xie, Su
    Li, Mengxun
    Wang, Yuan
    Li, Changchun
    SCIENTIFIC REPORTS, 2021, 11 (01)
  • [35] Characteristics of microRNAs in Skeletal Muscle of Intrauterine Growth-Restricted Pigs
    Jing, Yunhong
    Gan, Mailin
    Xie, Zhongwei
    Ma, Jianfeng
    Chen, Lei
    Zhang, Shunhua
    Zhao, Ye
    Niu, Lili
    Wang, Yan
    Zhu, Li
    Shen, Linyuan
    GENES, 2023, 14 (07)
  • [36] CircUBE2Q2 promotes differentiation of cattle muscle stem cells and is a potential regulatory molecule of skeletal muscle development
    Zhang, Rui-Men
    Pan, Yu
    Zou, Chao-Xia
    An, Qiang
    Cheng, Juan-Ru
    Li, Peng-Ju
    Zheng, Zi-Hua
    Pan, Yan
    Feng, Wan-You
    Yang, Su-Fang
    Shi, De-Shun
    Wei, Ying-Ming
    Deng, Yan-Fei
    BMC GENOMICS, 2022, 23 (01)
  • [37] Transcriptome Analysis of Skeletal Muscle in Pigs with Divergent Residual Feed Intake Phenotypes
    Hou, Xinhua
    Pu, Lei
    Wang, Ligang
    Liu, Xin
    Gao, Hongmei
    Yan, Hua
    Zhang, Jinshan
    Zhang, Yuebo
    Yue, Jingwei
    Zhang, Longchao
    Wang, Lixian
    DNA AND CELL BIOLOGY, 2020, 39 (03) : 404 - 416
  • [38] Integrated analysis of the whole transcriptome of skeletal muscle reveals the ceRNA regulatory network related to the formation of muscle fibers in Tan sheep
    Cui, Ran
    Kang, Xiaolong
    Liu, Yufang
    Liu, Ximing
    Chan, Shuheng
    Wang, Yubei
    Li, Zhen
    Ling, Yao
    Feng, Dengzhen
    Li, Menghua
    Lv, Fenghua
    Fang, Meiying
    FRONTIERS IN GENETICS, 2022, 13
  • [39] Development of a histopathological index for skeletal muscle analysis in Rattus norvegicus (Rodentia: Muridae)
    Zazula, Matheus Felipe
    de Andrade, Barbara Zanardini
    Boaro, Carolina De Toni
    Kirsch, Christian Bergmann
    Reginato, Aline
    Peretti, Ana Luiza
    Costa, Rose Meire
    Flor Bertolini, Gladson Ricardo
    Naliwaiko, Katya
    Bittencourt Guimaraes, Ana Tereza
    Chasko Ribeiro, Lucineia de Fatima
    ACTA HISTOCHEMICA, 2022, 124 (04)
  • [40] Temporal analysis of reciprocal miRNA-mRNA expression patterns predicts regulatory networks during differentiation in human skeletal muscle cells
    Sjogren, Rasmus J. O.
    Egan, Brendan
    Katayama, Mutsumi
    Zierath, Juleen R.
    Krook, Anna
    PHYSIOLOGICAL GENOMICS, 2015, 47 (03) : 45 - 57