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bioRxiv · 10.1101/2024.12.10.627763

Genomic divergence shaped the genetic regulation of meiotic homologous recombination in Brassica allopolyploids

Abstract

The tight regulation of meiotic recombination between homologs is disrupted in Brassica AAC allotriploids, a genomic configuration that may have facilitated the formation of rapeseed (Brassica napus L.) [~]7,500 years ago. Indeed, the presence of the haploid C genome induces supernumerary crossovers between homologous A chromosomes with dramatically reshaped distribution. However, the genetic mechanisms driving this phenomenon and their divergence between nascent and established lineages remain unclear. To address these concerns, we generated hybrids carrying additional C chromosomes derived either from an established lineage of the allotetraploid B. napus or from its diploid progenitor B. oleracea. We then assessed recombination variation across twelve populations by mapping male meiotic crossovers using Single Nucleotide Polymorphism markers evenly distributed across the sequenced A genome. Our findings reveal that the C09 chromosome of B. oleracea is responsible for the formation of additional crossovers near pericentromeric regions. Interestingly, its counterpart from an established lineage of B. napus shows no significant effect on its own, despite having a similar content of meiotic genes. However, we showed that the B. napus C09 chromosome influences crossover formation through inter-chromosomal epistatic interactions with other specific C chromosomes. These results provide new insights into the genetic regulation of homologous recombination in Brassica and emphasize the role of genomic divergence since the formation of the allopolyploid B. napus.

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BibTeXRIS

PELE, A., FALQUE, M., LODE-TABUREL, M., HUTEAU, V., Morice, J., CORITON, O., Martin, O. C., CHEVRE, A.-M., ROUSSEAU-GUEUTIN, M.. 2024-12-15. Genomic divergence shaped the genetic regulation of meiotic homologous recombination in Brassica allopolyploids. https://doi.org/10.1101/2024.12.10.627763

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