Cao Shuai, Sawettalake Nunchanoke, Shen Lisha
Temasek Life Sciences Laboratory, 1 Research Link, National University of Singapore, Singapore, Singapore.
Department of Biological Sciences, Faculty of Science, National University of Singapore, Singapore, Singapore.
Nat Commun. 2025 Aug 6;16(1):7257. doi: 10.1038/s41467-025-62641-w.
Lettuce (Lactuca sativa L.) is among the most widely cultivated and consumed vegetables globally, valued for its phytonutrients beneficial for human health. Here, we report the high-quality reference super-pangenome for the Lactuca genus by integrating 12 chromosome-scale genomes from representative cultivated lettuce morphotypes, landrace, and wild relatives, and investigate lettuce genome evolution and domestication. These assemblies exhibit diverse genome sizes ranging from 2.1 Gb to 5.5 Gb with abundant repetitive sequences, and expansion of repetitive sequences, associated with low DNA methylation levels, likely contributes to the genome size variations. Furthermore, by constructing a graph-based lettuce pangenome reference, we explore the landscape, genomic, and epigenetic features of structural variations, and reveal their contributions to gene expression and domestication. We also identify copy number variations in FLOWERING LOCUS C in association with delayed flowering in cultivated lettuce. Overall, this comprehensive Lactuca super-pangenome assembly will expedite functional genomics studies and breeding efforts of this globally important crop.
生菜(Lactuca sativa L.)是全球种植和消费最为广泛的蔬菜之一,因其对人体健康有益的植物营养素而备受重视。在此,我们通过整合来自代表性栽培生菜形态型、地方品种和野生近缘种的12个染色体水平基因组,报道了生菜属的高质量参考超级泛基因组,并研究了生菜基因组的进化和驯化过程。这些基因组组装体呈现出从2.1Gb到5.5Gb不等的多样基因组大小,具有丰富的重复序列,与低DNA甲基化水平相关的重复序列扩增可能导致了基因组大小的差异。此外,通过构建基于图的生菜泛基因组参考,我们探索了结构变异的景观、基因组和表观遗传特征,并揭示了它们对基因表达和驯化的贡献。我们还鉴定出与栽培生菜开花延迟相关的开花位点C的拷贝数变异。总体而言,这个全面的生菜超级泛基因组组装将加速对这种全球重要作物的功能基因组学研究和育种工作。