阚胜龙
助理研究员
所属院部: 海洋学院
访问次数:
论文成果
Cytonuclear interactions and subgenome dominance shape the evolution of organelle-targeted genes in the Brassica triangle of U
  • 发表刊物:
    Molecular Biology and Evolution
  • 刊物所在地:
    UNITED STATES
  • 关键字:
    allopolyploidy, cytonuclear interactions, mitochondria, plastid, subgenome dominance, Brassica
  • 摘要:
    The interaction and coevolution between nuclear and cytoplasmic genomes are one of the fundamental hallmarks of eukaryotic genome evolution and, 2 billion yr later, are still major contributors to the formation of new species. Although many studies have investigated the role of cytonuclear interactions following allopolyploidization, the relative magnitude of the effect of subgenome dominance versus cytonuclear interaction on genome evolution remains unclear. The Brassica triangle of U features 3 diploid species that together have formed 3 separate allotetraploid species on similar evolutionary timescales, providing an ideal system for understanding the contribution of the cytoplasmic donor to hybrid polyploid. Here, we investigated the evolutionary pattern of organelle-targeted genes in Brassica carinata (BBCC) and 2 varieties of Brassica juncea (AABB) at the whole-genome level, with particular focus on cytonuclear enzyme complexes. We found partial evidence that plastid-targeted genes experience selection to match plastid genomes, but no obvious corresponding signal in mitochondria-targeted genes from these 2 separately formed allopolyploids. Interestingly, selection acting on plastid genomes always reduced the retention rate of plastid-targeted genes encoded by the B subgenome, regardless of whether the Brassica nigra (BB) subgenome was contributed by the paternal or maternal progenitor. More broadly, this study illustrates the distinct selective pressures experienced by plastid- and mitochondria-targeted genes, despite a shared pattern of inheritance and natural history. Our study also highlights an important role for subgenome dominance in allopolyploid genome evolution, even in genes whose function depends on separately inherited molecules.
  • 论文类型:
    期刊论文
  • 论文编号:
    WOS:001191312300020
  • 学科门类:
    理学
  • 一级学科:
    生物学
  • 文献类型:
    J
  • 卷号:
    41
  • 期号:
    3
  • 页面范围:
    msae043
  • ISSN号:
    0737-4038
  • 是否译文:
  • 发表时间:
    2024-02-01
  • 收录刊物:
    SCI
版权所有   ©山东大学 地址:中国山东省济南市山大南路27号 邮编:250100 
查号台:(86)-0531-88395114
值班电话:(86)-0531-88364731 建设维护:山东大学信息化工作办公室