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Biligetu, B.

Publications and source records attributed to Biligetu, B..

2 recordsLinked to original sources

High-quality genome assemblies of diploid Bromus species enhance understanding of genome complexity and uncover large DNA satellite structures.

Genus Bromus includes important cool-season forage grasses, but large genome sizes and complex ploidy hinder genomic studies. Here we carried out long read sequencing of two diploid genomes, Bromus riparius and Bromus squarrosus, generating highly contiguous assemblies with contig N50 values of 294.76 Mb and 98.78 Mb, respectively. These assemblies uncovered high-order centromeric repeats and two unique large sub-telomeric repeats on chromosome 5 and 7. Repeat expansion in Bromus appears relatively recent compared to speciation events ([~]9.75 million years ago); yet strong synteny persists across species. Transposable elements such as Angela, SIRE, Athila, CRM, and Retand were identified as major contributors to genome expansion in related Bromus species. Population structure analysis resolved six major subpopulations, with wild relatives exhibiting a higher genetic divergence than cultivated types. Hybrid bromegrass lines showed a higher proportion of genomic contribution from B. inermis than B. riparius. Together, these genomic resources provide a foundation for investigating traits of interest and advancing bromegrass breeding.

genomics↗

Genomic Analysis Reveals Genetic Diversity, Population Structure and Evolutionary Dynamics in Bluebunch wheatgrass (Pseudoroegneria species)

Bluebunch wheatgrass (BBWG: Pseudoroegneria species) is an outcrossing perennial grass of considerable ecological and agricultural importance due to its resilience in adverse environmental conditions. To gain a deeper understanding of the diversity, population structure, and genetic relationship within the Pseudoroegneria genus, we analyzed genomic variations of 145 genotypes representing seven species (P. spicata, P. tauri, P. geniculata, P. libanotica, P. strigosa, P. stipifolia, and P. cognata) from major global lineages, using genotyping-by-sequencing. Our results identify six distinct genetic clusters, with P. spicata (a North America species) clearly separated from the other six species underscoring its unique genetic identity. In contrast, the Eurasian species exhibit mixed ancestry, indicating intricate genetic relationships and widespread exchange of genetic material. Furthermore, no single species tree fully captures the relationships among them, implying interactions such as hybridization or gene flows between closely related species. To investigate the evolutional history of Eurasian BBWG species, we reconstructed the species tree topology based on the SNV (single nucleotide variants) matrix, which revealed potential gene flow events. Our findings suggest that the Eurasian BBWG species have undergone reticulate evolution, characterized by substantial gene flow.

genomics↗