Plant Breeding, Wageningen University and Research, Droevendaalsesteeg 1, 6708PB, Wageningen, The Netherlands.
Gennovation B.V, Agro Business Park 10, 6708PW, Wageningen, The Netherlands.
Plant J. 2024 Nov;120(3):881-900. doi: 10.1111/tpj.17021. Epub 2024 Sep 12.
Lupinus mutabilis is an under-domesticated legume species from the Andean region of South America. It belongs to the New World lupins clade, which groups several lupin species displaying large genetic variation and adaptability to highly different environments. L. mutabilis is attracting interest as a potential multipurpose crop to diversify the European supply of plant proteins, increase agricultural biodiversity, and fulfill bio-based applications. This study reports the first high-quality L. mutabilis genome assembly, which is also the first sequenced assembly of a New World lupin species. Through comparative genomics and phylogenetics, the evolution of L. mutabilis within legumes and lupins is described, highlighting both genomic similarities and patterns specific to L. mutabilis, potentially linked to environmental adaptations. Furthermore, the assembly was used to study the genetics underlying important traits for the establishment of L. mutabilis as a novel crop, including protein and quinolizidine alkaloids contents in seeds, genomic patterns of classic resistance genes, and genomic properties of L. mutabilis mycorrhiza-related genes. These analyses pointed out copy number variation, differential genomic gene contexts, and gene family expansion through tandem duplications as likely important drivers of the genomic diversity observed for these traits between L. mutabilis and other lupins and legumes. Overall, the L. mutabilis genome assembly will be a valuable resource to conduct genetic research and enable genomic-based breeding approaches to turn L. mutabilis into a multipurpose legume crop.
变色羽扇豆是一种低度驯化的豆科植物,源自南美洲的安第斯地区。它属于新世界羽扇豆分支,该分支包括多个羽扇豆物种,具有较大的遗传变异和适应高度不同环境的能力。变色羽扇豆作为一种潜在的多功能作物引起了人们的兴趣,它可以丰富欧洲植物蛋白的供应,增加农业生物多样性,并满足生物基应用的需求。本研究报告了第一个高质量的变色羽扇豆基因组组装,这也是第一个测序的新世界羽扇豆物种的组装。通过比较基因组学和系统发育学,描述了变色羽扇豆在豆科和羽扇豆属中的进化,突出了与环境适应相关的基因组相似性和变色羽扇豆特有的模式。此外,该组装还用于研究作为一种新型作物的建立所涉及的重要性状的遗传学基础,包括种子中的蛋白质和喹诺里西啶生物碱含量、经典抗性基因的基因组模式以及变色羽扇豆与菌根相关基因的基因组特性。这些分析指出了数量变异、差异的基因组基因结构和串联重复导致的基因家族扩张,可能是这些性状在变色羽扇豆和其他羽扇豆和豆科植物之间观察到的基因组多样性的重要驱动因素。总的来说,变色羽扇豆基因组组装将成为开展遗传研究的宝贵资源,并使基于基因组的育种方法能够将变色羽扇豆转化为多功能豆科作物。