生物
甘蓝
多元化(营销策略)
基因
遗传学
芸苔属
基因表达
植物
营销
业务
作者
Xing Li,Yong Wang,Chengcheng Cai,Jialei Ji,Fengqing Han,Lei Zhang,Shumin Chen,Lingkui Zhang,Yinqing Yang,Qi Tang,Johan Bucher,Xuelin Wang,Limei Yang,Mu Zhuang,Kang Zhang,Honghao Lv,Guusje Bonnema,Yangyong Zhang,Feng Cheng
出处
期刊:Nature Genetics
[Springer Nature]
日期:2024-02-13
卷期号:56 (3): 517-529
被引量:13
标识
DOI:10.1038/s41588-024-01655-4
摘要
Abstract Brassica oleracea , globally cultivated for its vegetable crops, consists of very diverse morphotypes, characterized by specialized enlarged organs as harvested products. This makes B. oleracea an ideal model for studying rapid evolution and domestication. We constructed a B. oleracea pan-genome from 27 high-quality genomes representing all morphotypes and their wild relatives. We identified structural variations (SVs) among these genomes and characterized these in 704 B. oleracea accessions using graph-based genome tools. We show that SVs exert bidirectional effects on the expression of numerous genes, either suppressing through DNA methylation or promoting probably by harboring transcription factor-binding elements. The following examples illustrate the role of SVs modulating gene expression: SVs promoting BoPNY and suppressing BoCKX3 in cauliflower/broccoli, suppressing BoKAN1 and BoACS4 in cabbage and promoting BoMYBtf in ornamental kale. These results provide solid evidence for the role of SVs as dosage regulators of gene expression, driving B. oleracea domestication and diversification.
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