The genetic and epigenetic landscape of the <i>Arabidopsis</i> centromeres.
basic_science · Level V
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- Record sourced from PubMed, PMID 34762468.
- Also identified by DOI 10.1126/science.abi7489 and PMC identifier 10164409.
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Abstract
Centromeres attach chromosomes to spindle microtubules during cell division and, despite this conserved role, show paradoxically rapid evolution and are typified by complex repeats. We used long-read sequencing to generate the Col-CEN <i>Arabidopsis thaliana</i> genome assembly that resolves all five centromeres. The centromeres consist of megabase-scale tandemly repeated satellite arrays, which support CENTROMERE SPECIFIC HISTONE H3 (CENH3) occupancy and are densely DNA methylated, with satellite variants private to each chromosome. CENH3 preferentially occupies satellites that show the least amount of divergence and occur in higher-order repeats. The centromeres are invaded by <i>ATHILA</i> retrotransposons, which disrupt genetic and epigenetic organization. Centromeric crossover recombination is suppressed, yet low levels of meiotic DNA double-strand breaks occur that are regulated by DNA methylation. We propose that <i>Arabidopsis</i> centromeres are evolving through cycles of satellite homogenization and retrotransposon-driven diversification.
Medical subject headings
- Arabidopsis
- Centromere
- Chromosomes, Plant
- Epigenesis, Genetic