The Brassica oleracea genome reveals the asymmetrical evolution of polyploid genomes.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 24852848.
- Also identified by DOI 10.1038/ncomms4930 and PMC identifier 4279128.
- Licence recorded as CC BY-NC-SA.
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Abstract
Polyploidization has provided much genetic variation for plant adaptive evolution, but the mechanisms by which the molecular evolution of polyploid genomes establishes genetic architecture underlying species differentiation are unclear. Brassica is an ideal model to increase knowledge of polyploid evolution. Here we describe a draft genome sequence of Brassica oleracea, comparing it with that of its sister species B. rapa to reveal numerous chromosome rearrangements and asymmetrical gene loss in duplicated genomic blocks, asymmetrical amplification of transposable elements, differential gene co-retention for specific pathways and variation in gene expression, including alternative splicing, among a large number of paralogous and orthologous genes. Genes related to the production of anticancer phytochemicals and morphological variations illustrate consequences of genome duplication and gene divergence, imparting biochemical and morphological variation to B. oleracea. This study provides insights into Brassica genome evolution and will underpin research into the many important crops in this genus.
Medical subject headings
- Brassica
- Evolution, Molecular
- Genome, Plant
- Polyploidy