A graph-based pan-genome of Brassica oleracea provides new insights into its domestication and morphotype diversification

甘蓝 驯化 生物 多元化(营销策略) 基因组 基因 植物 进化生物学 遗传学 业务 营销
作者
Ning Guo,Shenyun Wang,Tianyi Wang,Mengmeng Duan,Mei Zong,Liming Miao,Shuo Han,Guixiang Wang,Xin Liu,Deshuang Zhang,Chengzhi Jiao,Hongwei Xu,Liyang Chen,Zhangjun Fei,Jianbin Li,Fan Liu
出处
期刊:Plant communications [Elsevier BV]
卷期号:5 (2): 100791-100791 被引量:8
标识
DOI:10.1016/j.xplc.2023.100791
摘要

The domestication of Brassica oleracea has resulted in diverse morphological types with distinct patterns of organ development. Here we report a graph-based pan-genome of B. oleracea constructed with high-quality genome assemblies of different morphotypes. The pan-genome harbors over 200 structural variant (SV) hotspot regions enriched with auxin and flowering-related genes. Population genomic analyses reveal that early domestication of B. oleracea focused on leaf or stem development. Gene flows resulting from agricultural practices and variety improvement are detected among different morphotypes. Selective sweep and pan-genome analyses identify an auxin-responsive SAUR gene and a CLE family gene as crucial players in the leaf-stem differentiation during the early stage of B. oleracea domestication, and the BoKAN1 gene as instrumental in shaping the leafy heads of cabbage and Brussels sprouts. Our pan-genome and functional analyses further discover that variations in the BoFLC2 gene play key roles in the divergence of vernalization and flowering characteristics among different morphotypes, and variations in the first intron of BoFLC3 are involved in fine-tuning the flowering process in cauliflower. This study provides a comprehensive understanding of the pan-genome of B. oleracea and sheds light on the domestication and differential organ development of this globally important crop species.

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