Nature Communications (Apr 2022)

Reshuffling of the ancestral core-eudicot genome shaped chromatin topology and epigenetic modification in Panax

  • Zhen-Hui Wang,
  • Xin-Feng Wang,
  • Tianyuan Lu,
  • Ming-Rui Li,
  • Peng Jiang,
  • Jing Zhao,
  • Si-Tong Liu,
  • Xue-Qi Fu,
  • Jonathan F. Wendel,
  • Yves Van de Peer,
  • Bao Liu,
  • Lin-Feng Li

DOI
https://doi.org/10.1038/s41467-022-29561-5
Journal volume & issue
Vol. 13, no. 1
pp. 1 – 12

Abstract

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The role of polyploidization generated genomic diversity in shaping the hierarchical genome architecture remains unclear. Here, the authors show that repatterning of the ancestral eudicot genome has resulted in multi-dimensional genome plasticity and secondary metabolite diversification via comparisons of Panax genomes.