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Complete Genomic Landscape Reveals Hidden Evolutionary History and Selection Signature in Asian Water Buffaloes (Bubalus bubalis)

  • Jingfang Si
  • , Dongmei Dai
  • , Neena Amatya Gorkhali
  • , Mingshan Wang
  • , Sheng Wang
  • , Saroj Sapkota
  • , Ram Chandra Kadel
  • , Amir Sadaula
  • , Aashish Dhakal
  • , Md Omar Faruque
  • , Abdullah Ibne Omar
  • , Eka Meutia Sari
  • , Hidayat Ashari
  • , Muhammad Ihsan Andi Dagong
  • , Marnoch Yindee
  • , Hossam E Rushdi
  • , Hussein Elregalaty
  • , Ahmed Amin
  • , Mohamed A Radwan
  • , Lan Doan Pham
  • W M M P Hulugalla, G L L Pradeepa Silva, Wei Zheng, Shahid Mansoor, Muhammad Basil Ali, Farhad Vahidi, Sahar Ahmed Al-Bayatti, Alfredo Pauciullo, Johannes A Lenstra, J Stuart F Barker, Lingzhao Fang, Dong-Dong Wu*, Jianlin Han*, Yi Zhang*
*Corresponding author for this work
  • China Agricultural University
  • National Animal Science Research Institute
  • Chinese Academy of Sciences
  • Ministry of Industry
  • National Trust for Nature Conservation- Biodiversity Conservation Center
  • Bangladesh Agricultural University
  • Syiah Kuala University
  • Hasanuddin University
  • Walailak University
  • Cairo University
  • Research Institute of Animal Production Slovakia
  • National Institute of Animal Sciences
  • University of Peradeniya
  • Chinese Academy of Agricultural Sciences
  • National Institute for Biotechnology and Genetic Engineering (NIBGE)
  • Agricultural Biotechnology Research Institute of Iran-North Branch (ABRII)
  • Al-Farabi University College
  • University of Turin
  • University of New England
  • Aarhus University
  • Yazhouwan National Laboratory

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

To identify the genetic determinants of domestication and productivity of Asian water buffaloes (Bubalus bubalis), 470 genomes of domesticated river and swamp buffaloes along with their putative ancestors, the wild water buffaloes (Bubalus arnee) are sequenced and integrated. The swamp buffaloes inherit the morphology of the wild buffaloes. In contrast, most river buffaloes are unique in their morphology, but their genomes cluster with the wild buffaloes. The levels of genomic diversity in Italian river and Indonesian swamp buffaloes decrease at opposite extremes of their distribution range. Purifying selection prevented the accumulation of harmful loss-of-function variants in the Indonesian buffaloes. Genes that evolved rapidly (e.g., GKAP1) following differential selections in the river and swamp buffaloes are involved in their reproduction. Genes related to milk production (e.g., CSN2) and coat color (e.g., MC1R) underwent strong selections in the dairy river buffaloes via soft and hard selective sweeps, respectively. The selective sweeps and single-cell RNA-seq data revealed the luminal cells as the key cell type in response to artificial selection for milk production of the dairy buffaloes. These findings show how artificial selection has been driving the evolutionary divergence and genetic differentiation in morphology and productivity of Asian water buffaloes.

Original languageEnglish
Article numbere2407615
JournalAdvanced Science
Volume12
Issue number4
Early online date4 Dec 2024
DOIs
Publication statusPublished - 27 Jan 2025

Bibliographical note

Publisher Copyright:
© 2024 The Author(s). Advanced Science published by Wiley-VCH GmbH.

Funding

This study was supported by the National Key Research and Development Program of China (2021YFD1200904), National Natural Scientific Foundation of China (31561143010), Yunnan Fundamental Research Projects (202301AW070012, 202401AV070007, and 202305AH340006), the earmarked fund for CARS36, and the High\u2010performance Computing Platform of China Agricultural University. The authors were grateful to the participants and all staff members who supported this study and the anonymous reviewers for their critical review of our manuscript.

FundersFunder number
National Natural Science Foundation of China31561143010
National Key Research and Development Program of China2021YFD1200904
Yunnan Fundamental Research Projects202401AV070007, 202301AW070012, 202305AH340006

    Keywords

    • CSN2
    • MC1R
    • buffalo
    • population genomics
    • selection
    • single-cell RNA-seq

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