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Integrative 3D genomics with multi-omics analysis and functional validation of genetic regulatory mechanisms of abdominal fat deposition in chickens

Author

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  • Linyong Shen

    (Northeast Agricultural University
    Ministry of Agriculture and Rural Affairs
    Education Department of Heilongjiang Province)

  • Xue Bai

    (Northeast Agricultural University
    Ministry of Agriculture and Rural Affairs
    Education Department of Heilongjiang Province)

  • Liru Zhao

    (Northeast Agricultural University
    Ministry of Agriculture and Rural Affairs
    Education Department of Heilongjiang Province)

  • Jiamei Zhou

    (Northeast Agricultural University
    Ministry of Agriculture and Rural Affairs
    Education Department of Heilongjiang Province)

  • Cheng Chang

    (Northeast Agricultural University
    Ministry of Agriculture and Rural Affairs
    Education Department of Heilongjiang Province)

  • Xinquan Li

    (Northeast Agricultural University
    Ministry of Agriculture and Rural Affairs
    Education Department of Heilongjiang Province)

  • Zhiping Cao

    (Northeast Agricultural University
    Ministry of Agriculture and Rural Affairs
    Education Department of Heilongjiang Province)

  • Yumao Li

    (Northeast Agricultural University
    Ministry of Agriculture and Rural Affairs
    Education Department of Heilongjiang Province)

  • Peng Luan

    (Northeast Agricultural University
    Ministry of Agriculture and Rural Affairs
    Education Department of Heilongjiang Province)

  • Hui Li

    (Northeast Agricultural University
    Ministry of Agriculture and Rural Affairs
    Education Department of Heilongjiang Province)

  • Hui Zhang

    (Northeast Agricultural University
    Ministry of Agriculture and Rural Affairs
    Education Department of Heilongjiang Province)

Abstract

Chickens are the most abundant agricultural animals globally, with controlling abdominal fat deposition being a key objective in poultry breeding. While GWAS can identify genetic variants associated with abdominal fat deposition, the precise roles and mechanisms of these variants remain largely unclear. Here, we use male chickens from two lines divergently selected for abdominal fat deposition as experimental models. Through the integration of genomic, epigenomic, 3D genomic, and transcriptomic data, we build a comprehensive chromatin 3D regulatory network map to identify the genetic regulatory mechanisms that influence abdominal fat deposition in chickens. Notably, we find that the rs734209466 variant functions as an allele-specific enhancer, remotely enhancing the transcription of IGFBP2 and IGFBP5 by the binding transcription factor IRF4. This interaction influences the differentiation and proliferation of preadipocytes, which ultimately affects phenotype. This work presents a detailed genetic regulatory map for chicken abdominal fat deposition, offering molecular targets for selective breeding.

Suggested Citation

  • Linyong Shen & Xue Bai & Liru Zhao & Jiamei Zhou & Cheng Chang & Xinquan Li & Zhiping Cao & Yumao Li & Peng Luan & Hui Li & Hui Zhang, 2024. "Integrative 3D genomics with multi-omics analysis and functional validation of genetic regulatory mechanisms of abdominal fat deposition in chickens," Nature Communications, Nature, vol. 15(1), pages 1-20, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-53692-6
    DOI: 10.1038/s41467-024-53692-6
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