National Key Facility for Crop Gene Resources and Genetic Improvement / Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.
State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.
Nat Genet. 2022 Oct;54(10):1553-1563. doi: 10.1038/s41588-022-01172-2. Epub 2022 Sep 22.
Complete and accurate reference genomes and annotations provide fundamental resources for functional genomics and crop breeding. Here we report a de novo assembly and annotation of a pea cultivar ZW6 with contig N50 of 8.98 Mb, which features a 243-fold increase in contig length and evident improvements in the continuity and quality of sequence in complex repeat regions compared with the existing one. Genome diversity of 118 cultivated and wild pea demonstrated that Pisum abyssinicum is a separate species different from P. fulvum and P. sativum within Pisum. Quantitative trait locus analyses uncovered two known Mendel's genes related to stem length (Le/le) and seed shape (R/r) as well as some candidate genes for pod form studied by Mendel. A pan-genome of 116 pea accessions was constructed, and pan-genes preferred in P. abyssinicum and P. fulvum showed distinct functional enrichment, indicating the potential value of them as pea breeding resources in the future.
完整准确的参考基因组和注释为功能基因组学和作物育种提供了基础资源。在这里,我们报告了一个豌豆品种 ZW6 的从头组装和注释,其拼接体 N50 为 8.98Mb,与现有序列相比,拼接体长度增加了 243 倍,复杂重复区域的序列连续性和质量有明显改善。对 118 个栽培和野生豌豆的基因组多样性研究表明,埃塞俄比亚豌豆是一个独立的物种,与 P. fulvum 和 P. sativum 不同。数量性状位点分析揭示了与茎长(Le/le)和种子形状(R/r)相关的两个已知的孟德尔基因,以及孟德尔研究的一些候选荚果形成基因。构建了 116 个豌豆品系的泛基因组,P. abyssinicum 和 P. fulvum 中偏好的泛基因表现出明显的功能富集,表明它们作为未来豌豆育种资源的潜在价值。