Whole genome duplications (WGDs) have played a major role in angiosperm species evolution. Polyploid plants have undergone multiple cycles of ancient WGD events during their evolutionary history. However, little attention has been paid to the additional WGD of the existing allopolyploids. In this study, we explored the influences of additional WGD on the allopolyploid Brassica napus. Compared to tetraploid B. napus, octoploid B. napus (AAAACCCC, 2n = 8x =76) showed significant differences in phenotype, reproductive ability and the ploidy of self-pollinated progeny. Genome duplication also altered a key reproductive organ feature in B. napus, that is, increased the number of pollen apertures. Unlike autopolyploids produced from the diploid B...
Polyploidy plays a crucial role in plant evolution. Brassica napus (2n = 38, AACC), the most importa...
National audienceMeiotic recombination by crossovers (COs) is tightly regulated, limiting its key ro...
chapitre 10Brassica species have a long common history with polyploidy, and in the last two decades ...
International audienceAllopolyploidy, which results from the merger and duplication of two divergent...
Allopolyploidy, which results from the merger and duplication of two divergent genomes, has played a...
International audienceAllopolyploids have globally higher fitness than their diploid progenitors; ho...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
International audienceAllopolyploids have globally higher fitness than their diploid progenitors; ho...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
International audienceAllopolyploids have globally higher fitness than their diploid progenitors; ho...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
Polyploidy plays a crucial role in plant evolution. Brassica napus (2n = 38, AACC), the most importa...
Polyploidy plays a crucial role in plant evolution. Brassica napus (2n = 38, AACC), the most importa...
National audienceMeiotic recombination by crossovers (COs) is tightly regulated, limiting its key ro...
chapitre 10Brassica species have a long common history with polyploidy, and in the last two decades ...
International audienceAllopolyploidy, which results from the merger and duplication of two divergent...
Allopolyploidy, which results from the merger and duplication of two divergent genomes, has played a...
International audienceAllopolyploids have globally higher fitness than their diploid progenitors; ho...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
International audienceAllopolyploids have globally higher fitness than their diploid progenitors; ho...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
International audienceAllopolyploids have globally higher fitness than their diploid progenitors; ho...
International audienceWhole genome duplication (WGD) is recognized as a major force in plant evoluti...
Polyploidy plays a crucial role in plant evolution. Brassica napus (2n = 38, AACC), the most importa...
Polyploidy plays a crucial role in plant evolution. Brassica napus (2n = 38, AACC), the most importa...
National audienceMeiotic recombination by crossovers (COs) is tightly regulated, limiting its key ro...
chapitre 10Brassica species have a long common history with polyploidy, and in the last two decades ...