:A genome-wide landscape of mRNAs,lncRNAs,and circRNAs during subcutaneous adipogenesis in pigs论文

:A genome-wide landscape of mRNAs,lncRNAs,and circRNAs during subcutaneous adipogenesis in pigs论文

本文主要研究内容

作者(2019)在《A genome-wide landscape of mRNAs,lncRNAs,and circRNAs during subcutaneous adipogenesis in pigs》一文中研究指出:Background: Preadipocyte differentiation plays a critical role in subcutaneous fat deposition in pigs.However,the roles of different RNAs,such as messenger RNAs(mRNAs),long non-coding RNAs(lncRNAs),and circular RNAs(circRNAs) in the differentiation process of subcutaneous preadipocytes,are still largely unclear.In the present study,a transcriptome analysis,including the analysis of mRNAs,lncRNAs,and circRNAs,during different differentiation stages,namely,day 0(D0),day 2(D2),day 4(D4),and day 8(D8),of subcutaneous preadipocytes from Chinese Erhualian pigs was performed.Results: A total of 1554,470,1344,1777,and 676 differentially expressed(DE) mRNAs,112,58,95,136,and 93 DE lncRNAs,and 902,787,710,932,and 850 DE circRNAs were identified between D2 and D0,between D4 and D2,between D8 and D4,between D4 and D0,and between D8 and D0,respectively.Furthermore,functional enrichment analysis showed that the common DE mRNAs during the entire differentiation process were mainly involved in lipid metabolic and cell differentiation processes.Additionally,co-expression network analysis identified the potential lncRNAs related to adipogenesis,e.g.,MSTRG.131380 and MSTRG.62128.Conclusions: Our study provides new insights of the expression changes of RNAs during adipogenic differentiation,which might contribute to the phenotype of subcutaneous adipogenesis.These results greatly improve our understanding of the molecular mechanisms regulating subcutaneous fat deposition in pigs.

Abstract

Background: Preadipocyte differentiation plays a critical role in subcutaneous fat deposition in pigs.However,the roles of different RNAs,such as messenger RNAs(mRNAs),long non-coding RNAs(lncRNAs),and circular RNAs(circRNAs) in the differentiation process of subcutaneous preadipocytes,are still largely unclear.In the present study,a transcriptome analysis,including the analysis of mRNAs,lncRNAs,and circRNAs,during different differentiation stages,namely,day 0(D0),day 2(D2),day 4(D4),and day 8(D8),of subcutaneous preadipocytes from Chinese Erhualian pigs was performed.Results: A total of 1554,470,1344,1777,and 676 differentially expressed(DE) mRNAs,112,58,95,136,and 93 DE lncRNAs,and 902,787,710,932,and 850 DE circRNAs were identified between D2 and D0,between D4 and D2,between D8 and D4,between D4 and D0,and between D8 and D0,respectively.Furthermore,functional enrichment analysis showed that the common DE mRNAs during the entire differentiation process were mainly involved in lipid metabolic and cell differentiation processes.Additionally,co-expression network analysis identified the potential lncRNAs related to adipogenesis,e.g.,MSTRG.131380 and MSTRG.62128.Conclusions: Our study provides new insights of the expression changes of RNAs during adipogenic differentiation,which might contribute to the phenotype of subcutaneous adipogenesis.These results greatly improve our understanding of the molecular mechanisms regulating subcutaneous fat deposition in pigs.

论文参考文献

  • [1].Subcutaneous fatty acid composition of steers finished as weanlings or yearlings with and without growth promotants[J]. Cletos Mapiye,Tyler D Turner,John A Basarab,Vern S Baron,Jennifer L Aalhus,Michael ER Dugan.  Journal of Animal Science and Biotechnology.2014(01)
  • [2].Effects of Dietary Energy Level on the Expression of the HSL Gene in DifferentTissues of Sheep[J]. ZHANG Ying-jie, LIU Yue-qin, CHENG Shan-yan and SONG Jie College of Animal Science and Technology, Agricultural University of Hebei, Baoding 071000, P.R.China.  Journal of Integrative Agriculture.2012(07)
  • [3].Dermoid cyst in a domestic shorthair cat[J]. Akhtardanesh B,Kheirandish R,Azari O.  Asian Pacific Journal of Tropical Biomedicine.2012(03)
  • [4].Growth Performances and Carcass Traits of Different Duck Breeds[J]. WU Yan1,2,DU Jin-ping1*,PI Jin-song1,PAN Ai-luan1,SHEN Jie1,PU Yue-jin1,LIANG Zhen-hua1 1.Institute of Animal Husbandry and Veterinary,Hubei Academy of Agricultural Science,Wuhan 430064,China;2.Key Laboratory of Animal Embryo Engineering and Molecular Breeding in Hubei Province,Wuhan 430064,China.  Animal Husbandry and Feed Science.2010(Z1)
  • [5].Residual feed intake phenotype and gender affect the expression of key genes of the lipogenesis pathway in subcutaneous adipose tissue of beef cattle[J]. Clare McKenna,Richard K.Porter,Kate A.Keogh,Sinead M.Waters,Mark McGee,David A.Kenny.  Journal of Animal Science and Biotechnology.2019(01)
  • [6].Identification and characterization of genes that control fat deposition in chickens[J]. Hirwa Claire D’Andre,Wallace Paul,Xu Shen,Xinzheng Jia,Rong Zhang,Liang Sun,Xiquan Zhang.  Journal of Animal Science and Biotechnology.2014(01)
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