Wild soybean (
Glycine soja
), the progenitor of cultivated soybean (
Glycine max
), represents an important reservoir of genetic diversity crucial for soybean improvement. However, the limited availability of high-quality reference genomes for wild soybean has constrained its comprehensive genomic characterization. Here, we present a telomere-to-telomere (T2T) genome assembly of a wild soybean (
G. soja
) accession HAAS216 with a size of 1,018.17 Mb, generated using PacBio HiFi, ultra-long Oxford Nanopore sequencing, and Hi-C data. The assembly spans all 20 chromosomes and captures 20 centromeric and 40 telomeric regions, forming a gap-free T2T genome assembly. This assembly exhibits superior quality regarding completeness (BUSCO: 99.6%), contiguity (contig N50: 51 Mb), and base-level accuracy (QV: 55.53). Repetitive sequences make up 55.84% (568.57 Mb) of the genome, and 48,390 protein-coding genes were predicted, of which 47,567 (98.30%) were functionally annotated. This genome assembly provides a genomic resource for comparative genomics and facilitates genetic research and crop improvement in soybean.
M. Asad, Sui Wang, Jing Zhang et al.· Scientific Data· 0 citations
The findings suggest that GmRD22 has undergone directional selection during soybean domestication and improvement, and offer new insights into the genetic control of SNF and establish promising targets for breeding soybean varieties with improved nitrogen fixation efficiency.
Hanyu Zhao, Jiaying Zhong, Chao Ma et al.· Plants· 0 citations
Findings reveal that FA9 interacts with VAP to promote lipid droplet biogenesis and lipid transport, thereby driving fatty acid accumulation in soybean seeds.