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Genome-wide expansion and reorganization during grass evolution: from 30 Mb chromosomes in rice and Brachypodium to 550 Mb in Avena. | LitMetric

Genome-wide expansion and reorganization during grass evolution: from 30 Mb chromosomes in rice and Brachypodium to 550 Mb in Avena.

BMC Plant Biol

Key Laboratory of Plant Resources Conservation and Sustainable Utilization, Guangdong Provincial Key Laboratory of Applied Botany, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou, 510650, China.

Published: December 2023

AI Article Synopsis

  • - The study investigates the genomic similarities and differences within the BOP clade of the Poaceae family, particularly focusing on the genomes of rice, Brachypodium, and various diploid species in the tribe Aveneae, revealing significant genomic expansions and structural variations.
  • - Findings show that Avena chromosomes experienced a ten to fifteen-fold increase in size, characterized by uniform expansions, conserved gene block arrangements, and notable translocations of gene-rich segments during speciation, indicating deep evolutionary relationships.
  • - This research enhances understanding of evolutionary processes in the BOP clade, offering insights that can aid in biodiversity assessment, the creation of a comprehensive pangenome, and utilizing genomic diversity for breeding initiatives in grass species.

Article Abstract

Background: The BOP (Bambusoideae, Oryzoideae, and Pooideae) clade of the Poaceae has a common ancestor, with similarities to the genomes of rice, Oryza sativa (2n = 24; genome size 389 Mb) and Brachypodium, Brachypodium distachyon (2n = 10; 271 Mb). We exploit chromosome-scale genome assemblies to show the nature of genomic expansion, structural variation, and chromosomal rearrangements from rice and Brachypodium, to diploids in the tribe Aveneae (e.g., Avena longiglumis, 2n = 2x = 14; 3,961 Mb assembled to 3,850 Mb in chromosomes).

Results: Most of the Avena chromosome arms show relatively uniform expansion over the 10-fold to 15-fold genome-size increase. Apart from non-coding sequence diversification and accumulation around the centromeres, blocks of genes are not interspersed with blocks of repeats, even in subterminal regions. As in the tribe Triticeae, blocks of conserved synteny are seen between the analyzed species with chromosome fusion, fission, and nesting (insertion) events showing deep evolutionary conservation of chromosome structure during genomic expansion. Unexpectedly, the terminal gene-rich chromosomal segments (representing about 50 Mb) show translocations between chromosomes during speciation, with homogenization of genome-specific repetitive elements within the tribe Aveneae. Newly-formed intergenomic translocations of similar extent are found in the hexaploid A. sativa.

Conclusions: The study provides insight into evolutionary mechanisms and speciation in the BOP clade, which is valuable for measurement of biodiversity, development of a clade-wide pangenome, and exploitation of genomic diversity through breeding programs in Poaceae.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10704644PMC
http://dx.doi.org/10.1186/s12870-023-04644-7DOI Listing

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