bioRxiv · 10.1101/2024.05.24.595664
The genomic and epigenomic dynamics of hemizygous genes across crops with contrasting mating systems
Abstract
Hemizygous genes, which present on only one of the two homologous chromosomes of diploid organisms, have been mainly studied in the context of sex chromosomes and sex-linked genes. However, structural variants (SVs), such as a deletion/insertion of one allele, can lead to hemizygous genes, a phenomenon largely unexplored in plants. Here, we investigated the genomic and epigenomic landscapes of hemizygous genes across 22 genomes with varying propagation histories: eleven clonal lineages, seven outcrossed samples and four inbred and putatively homozygous genomes. We identified SVs leading to genic hemizygosity. As expected, very few genes (0.01%-1.2%) were hemizygous in the homozygous genomes, representing negative controls. Hemizygosity was appreciable among outcrossed lineages, averaging 8.7% of genes, but consistently elevated for the clonal samples at 13.8% genes, likely reflecting heterozygous SVs accumulation during clonal propagation. Compared to diploid genes, hemizygous genes were more often situated in centromeric than telomeric regions and underlying weaker purifying selection. They also had reduced levels of expression, averaging [~]20% of the expression levels of diploid genes, violating the evolutionary model of dosage compensation. We also detected higher DNA methylation levels, in hemizygous genes and transposable elements, which may contribute to the reduced expression of hemizygous genes. Finally, expression profiles showed that hemizygous genes were more specifically expressed in contexts related to fruit development, organ differentiation and stress responses. Overall, hemizygous genes accumulate in clonally propagated lineages and display distinct genetic, and epigenetic features compared to diploid genes, shedding new insights on genetic studies and breeding programs of clonal crops.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Peng, Y., Wang, Y., Liu, Y., Fang, X., Cheng, L., Long, Q., Xu, Q., Wang, N., Zhang, F., Liu, Z., Xiao, H., Chen, S., Hu, W., Huang, S., Gaut, B., Zhou, Y.. 2024-05-28. The genomic and epigenomic dynamics of hemizygous genes across crops with contrasting mating systems. https://doi.org/10.1101/2024.05.24.595664
Cite the original work for its findings. Save a collection to share your selection of sources.