4.8 Article

Rapid proliferation and nucleolar organizer targeting centromeric retrotransposons in cotton

期刊

PLANT JOURNAL
卷 88, 期 6, 页码 992-1005

出版社

WILEY
DOI: 10.1111/tpj.13309

关键词

centromeric retrotransposon; rapid proliferation; dual targeting retrotransposon; Gossypium raimondii; centromere evolution

资金

  1. National Natural Science Foundation of China [31471170]
  2. Startup Foundation from Fujian Agriculture and Forestry University [11899006004]
  3. State Key Laboratory of Cotton Biology Open Fund [CB2015A05]
  4. Cotton Incorporated

向作者/读者索取更多资源

Centromeric chromatin in most eukaryotes is composed of highly repetitive centromeric retrotransposons and satellite repeats that are highly variable even among closely related species. The evolutionary mechanisms that underlie the rapid evolution of centromeric repeats remain unknown. To obtain insight into the evolution of centromeric repeats following polyploidy, we studied a model diploid progenitor (Gossypium raimondii, D-genome) of the allopolyploid (AD-genome) cottons, G. hirsutum and G. barbadense. Sequence analysis of chromatin-immunoprecipitated DNA showed that the G. raimondii centromeric repeats originated from retrotransposon-related sequences. Comparative analysis showed that nine of the 10 analyzed centromeric repeats were absent from the centromeres in the A-genome and related diploid species (B-, F- and G-genomes), indicating that they colonized the centromeres of D-genome lineage after the divergence of the A- and D- ancestral species or that they were ancestrally retained prior to the origin of Gossypium. Notably, six of the nine repeats were present in both the A- and D-subgenomes in tetraploid G. hirsutum, and increased in abundance in both subgenomes. This finding suggests that centromeric repeats may spread and proliferate between genomes subsequent to polyploidization. Two repeats, Gr334 and Gr359 occurred in both the centromeres and nucleolar organizer regions (NORs) in D- and AD-genome species, yet localized to just the NORs in A-, B-, F-, and G-genome species. Contained within is a story of an established centromeric repeat that is eliminated and allopolyploidization provides an opportunity for reinvasion and reestablishment, which broadens our evolutionary understanding behind the cycles of centromeric repeat establishment and targeting.

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