4.8 Article

Degree of Functional Divergence in Duplicates Is Associated with Distinct Roles in Plant Evolution

期刊

MOLECULAR BIOLOGY AND EVOLUTION
卷 38, 期 4, 页码 1447-1459

出版社

OXFORD UNIV PRESS
DOI: 10.1093/molbev/msaa302

关键词

duplicate genes; Arabidopsis thaliana; genome evolution; tandem duplication; whole-genome duplication; functional divergence

资金

  1. Takeda Science Foundation
  2. Sumitomo Foundation
  3. Asahi Glass Foundation
  4. Teijin-Kumura scholarship
  5. Sugiura scholarship
  6. [25710017]
  7. [15H02433]
  8. [17H03727]
  9. [18KK0176]
  10. [18H02420]
  11. [19K22313]
  12. [19H05348]

向作者/读者索取更多资源

Gene duplication is a major mechanism for creating new genes in plants, resulting in duplicated genes with varying degrees of functional diversification. High diversified duplicates from tandem duplications tend to have lineage-specific functions, while low diversified duplicates from whole-genome duplications are related to essential signaling pathways, impacting plant evolution differently.
Gene duplication is a major mechanism to create new genes. After gene duplication, some duplicated genes undergo functionalization, whereas others largely maintain redundant functions. Duplicated genes comprise various degrees of functional diversification in plants. However, the evolutionary fate of high and low diversified duplicates is unclear at genomic scale. To infer high and low diversified duplicates in Arabidopsis thaliana genome, we generated a prediction method for predicting whether a pair of duplicate genes was subjected to high or low diversification based on the phenotypes of knock-out mutants. Among 4,017 pairs of recently duplicated A. thaliana genes, 1,052 and 600 are high and low diversified duplicate pairs, respectively. The predictions were validated based on the phenotypes of generated knock-down transgenic plants. We determined that the high diversified duplicates resulting from tandem duplications tend to have lineage-specific functions, whereas the low diversified duplicates produced by whole-genome duplications are related to essential signaling pathways. To assess the evolutionary impact of high and low diversified duplicates in closely related species, we compared the retention rates and selection pressures on the orthologs of A. thaliana duplicates in two closely related species. Interestingly, high diversified duplicates resulting from tandem duplications tend to be retained in multiple lineages under positive selection. Low diversified duplicates by whole-genome duplications tend to be retained in multiple lineages under purifying selection. Taken together, the functional diversities determined by different duplication mechanisms had distinct effects on plant evolution.

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