Homoeologous Recombination: A Novel and Efficient System for Broadening the Genetic Variability in Wheat
2020
Dal-Hoe Koo | Bernd Friebe | Bikram S. Gill
Gene transfer from wild wheat relatives to bread wheat is restricted to homologous recombination. The presence of the Pairing homoeologous 1 (<i>Ph1</i>) gene in the long arm of wheat chromosome 5B allows only homologous chromosomes to pair and recombine, resulting in diploid inheritance of polyploid wheat. Previously, we identified a potent homoeologous pairing promotor gene(s) (<i>Hpp-5M<sup>g</sup></i>); its carrier chromosome 5M<sup>g</sup> derived from <i>Aegilops geniculata</i> and its wheat homoeologous chromosome 5D freely recombined in the presence of the <i>Ph1</i> gene. In this study, we investigated the effect of <i>Hpp-5M<sup>g</sup></i> on homoeologous recombination in the absence of <i>Ph1</i>. In <i>Hpp-5M<sup>g</sup>/ph1bph1b</i> plants, we observed a vast genome-wide increase in homoeologous recombination and multiple crossovers (CO), including CO breakpoints in proximal regions of the chromosomes where recombination is known to be suppressed. We tested the efficacy of <i>Hpp-5M<sup>g</sup>/ph1bph1b</i>-induced homoeologous recombination by producing new recombinants for the wheat streak mosaic virus resistance gene, <i>Wsm3</i>, present in the wheat-<i>Thinopyrum intermedium</i> Robertsonian translocation (RobT T7BS.7S#3L). A recombination frequency of 6.5% was detected by screening the progenies double monosomic for T7BS.7S#3L and 7B by genomic in situ hybridization. This recombination frequency was about 100-fold higher compared with the recombinant frequency of 0.06% observed by using <i>ph1b</i>-induced homoeologous recombination alone. Our results indicate that chromosome 5M<sup>g</sup> promotes homoeologous recombination between wheat and wild wheat relative chromosomes, which helps in the generation of pre-breeding materials thereby accelerating wheat crop improvement.
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