Department of Agronomy and Plant Genetics, University of Minnesota, St. Paul, Minnesota, 55108, USA.
HudsonAlpha Institute for Biotechnology, Huntsville, Alabama, 35806, USA.
Plant J. 2024 Nov;120(3):1221-1235. doi: 10.1111/tpj.17026. Epub 2024 Sep 14.
Cultivar Williams 82 has served as the reference genome for the soybean research community since 2008, but is known to have areas of genomic heterogeneity among different sub-lines. This work provides an updated assembly (version Wm82.a6) derived from a specific sub-line known as Wm82-ISU-01 (seeds available under USDA accession PI 704477). The genome was assembled using Pacific BioSciences HiFi reads and integrated into chromosomes using HiC. The 20 soybean chromosomes assembled into a genome of 1.01Gb, consisting of 36 contigs. The genome annotation identified 48 387 gene models, named in accordance with previous assembly versions Wm82.a2 and Wm82.a4. Comparisons of Wm82.a6 with other near-gapless assemblies of Williams 82 reveal large regions of genomic heterogeneity, including regions of differential introgression from the cultivar Kingwa within approximately 30 Mb and 25 Mb segments on chromosomes 03 and 07, respectively. Additionally, our analysis revealed a previously unknown large (>20 Mb) heterogeneous region in the pericentromeric region of chromosome 12, where Wm82.a6 matches the 'Williams' haplotype while the other two near-gapless assemblies do not match the haplotype of either parent of Williams 82. In addition to the Wm82.a6 assembly, we also assembled the genome of 'Fiskeby III,' a rich resource for abiotic stress resistance genes. A genome comparison of Wm82.a6 with Fiskeby III revealed the nucleotide and structural polymorphisms between the two genomes within a QTL region for iron deficiency chlorosis resistance. The Wm82.a6 and Fiskeby III genomes described here will enhance comparative and functional genomics capacities and applications in the soybean community.
栽培品种 Williams 82 自 2008 年以来一直是大豆研究界的参考基因组,但已知不同亚系之间存在基因组异质性区域。这项工作提供了一个更新的组装体(版本 Wm82.a6),源自一个特定的亚系,称为 Wm82-ISU-01(种子可在美国农业部 accession PI 704477 下获得)。该基因组使用 Pacific BioSciences HiFi 读取进行组装,并使用 HiC 将其整合到染色体中。20 条大豆染色体组装成一个 1.01Gb 的基因组,由 36 个连续体组成。基因组注释确定了 48387 个基因模型,这些基因模型按照先前的组装版本 Wm82.a2 和 Wm82.a4 进行了命名。将 Wm82.a6 与其他近乎无间隙的 Williams 82 组装进行比较,发现存在大量基因组异质性区域,包括从栽培品种 Kingwa 中不同程度的基因渗入区域,分别在大约 30Mb 和 25Mb 片段上位于第 03 和第 07 号染色体上。此外,我们的分析还揭示了第 12 号染色体着丝粒区域中一个先前未知的大型(>20Mb)异质性区域,其中 Wm82.a6 与‘Williams’单倍型匹配,而其他两个近乎无间隙的组装体与 Williams 82 的任何亲本的单倍型都不匹配。除了 Wm82.a6 组装体,我们还组装了‘Fiskeby III’的基因组,这是一个抗非生物胁迫基因的丰富资源。将 Wm82.a6 与 Fiskeby III 的基因组进行比较,揭示了铁缺乏黄化抗性 QTL 区域内两个基因组之间的核苷酸和结构多态性。这里描述的 Wm82.a6 和 Fiskeby III 基因组将增强大豆研究社区的比较和功能基因组学能力和应用。