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A graph-based goat pangenome reveals structural variations involved in domestication and adaptation

  • Peipei Bian
  • , Jiaxin Li
  • , Shishuo Zhou
  • , Xingquan Wang
  • , Mian Gong
  • , Xi Guo
  • , Yudong Cai
  • , Qimeng Yang
  • , Jiaqi Fu
  • , Rongrong Li
  • , Shuhong Huang
  • , Funong Luo
  • , Ali Mujtaba Shah
  • , Johannes A Lenstra
  • , Joram M Mwacharo
  • , Ran Li
  • , Gang Ren
  • , Xiaolong Wang
  • , Cong Li
  • , Wenxin Zheng
  • Yu Jiang*, Xihong Wang*
*Corresponding author for this work
  • Northwest Normal University
  • Dryland Livestock Genomics
  • Xinjiang Uyghur Autonomous Region Academy of Animal Science

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Pangenomes can facilitate a deeper understanding of genome complexity. Using de novo phased long-read assemblies of eight representative goat breeds, we constructed a graph-based pangenome of goats (Capra hircus) and discovered 113 Mb autosomal novel sequences. Combining this multi-assembly pangenome with low-coverage PacBio HiFi sequences, we constructed a long-read structural variations (SVs) database containing 59,325 SV deletions, 84,910 SV insertions and 24,954 other complex SV alleles. This resource allowed reliable graph-based genotyping from short reads of 79 wild and 1,148 worldwide domestic goats. Selection signal analysis of SV captured a novel immune-related domestication locus containing the galectin-9 gene and extra copies of the ruminant-specific galectin-9-like genes (LGALS9L), which have high tissue specificity. A segmental duplication in domestic goats generates three additional LGALS9L copies. Ancient goat genome sequences show a gradual increase in frequency of this duplication from the Neolithic to the present. Two other newly detected SVs also have higher selection signals than adjacent SNPs, a truncated-LINE1 deletion in EDAR2 associated with cashmere production and a VNTR-related insertion in PAPSS2 linked to high-altitude adaptation. In summary, the multi-assembly goat pangenome and long-read SV database facilitates detecting complex variations that are important in evolution and selection.

Original languageEnglish
Article numbermsae251
Number of pages17
JournalMolecular Biology and Evolution
Volume41
Issue number12
Early online date12 Dec 2024
DOIs
Publication statusPublished - Dec 2024

Bibliographical note

© The Author(s) 2024. Published by Oxford University Press on behalf of Society for Molecular Biology and Evolution.

Funding

This study was supported by research grants from the National Key Research and Development Program of China (2022YFF1000100), Shaanxi Livestock and Poultry Breeding Double-chain Fusion Key Project (2022GD- TSLD-46-0401), Key Science and Technology Projects of Xinjiang Uygur Autonomous Region (2024A02004) to Y.J.; the National Natural Science Foundation of China (U23A20228) to X.L.W.; Design and Breeding of New High-Quality Disease-Resistant Cashmere Goat Varieties (2023ZD04051) and Science and Technology Innovation Team (Tianshan Innovation Team) (20221100619) to W.X.Z.; and Key Research Program of Core Technology of Shannxi Province (2024NC2-GJHX-09) to X.H.W. We thank the High-Performance Computing platform of Northwest A&F University for providing computing resources and the Yulin Sheep & Goat Industrial Development Research Institute for sample collection.

FundersFunder number
National Key Research and Development Program of China2022YFF1000100
Shaanxi Livestock and Poultry Breeding Double-chain Fusion Key Project2022GD- TSLD-46-0401
Key Science and Technology Projects of Xinjiang Uygur Autonomous Region2024A02004
National Natural Science Foundation of ChinaU23A20228
Design and Breeding of New High-Quality Disease-Resistant Cashmere Goat Varieties2023ZD04051
Science and Technology Innovation Team (Tianshan Innovation Team)20221100619
Key Research Program of Core Technology of Shannxi Province2024NC2-GJHX-09

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