Subgenome parallel selection is associated with morphotype diversification and convergent crop domestication in Brassica rapa and Brassica oleracea

油菜 生物 甘蓝 驯化 芸苔属 芥子植物 基因组 遗传学 基因 植物
作者
Feng Cheng,Rifei Sun,Xilin Hou,Hongkun Zheng,Fenglan Zhang,Yangyong Zhang,Bo Liu,Jianli Liang,Mu Zhuang,Yunxia Liu,Dongyuan Liu,Xiaobo Wang,Pingxia Li,Yumei Liu,Ke Lin,Johan Bucher,Ningwen Zhang,Yan Wang,Hui Wang,Jie Deng
出处
期刊:Nature Genetics [Nature Portfolio]
卷期号:48 (10): 1218-1224 被引量:410
标识
DOI:10.1038/ng.3634
摘要

Brassica species, including crops such as cabbage, turnip and oilseed, display enormous phenotypic variation. Brassica genomes have all undergone a whole-genome triplication (WGT) event with unknown effects on phenotype diversification. We resequenced 199 Brassica rapa and 119 Brassica oleracea accessions representing various morphotypes and identified signals of selection at the mesohexaploid subgenome level. For cabbage morphotypes with their typical leaf-heading trait, we identified four subgenome loci that show signs of parallel selection among subgenomes within B. rapa, as well as four such loci within B. oleracea. Fifteen subgenome loci are under selection and are shared by these two species. We also detected strong subgenome parallel selection linked to the domestication of the tuberous morphotypes, turnip (B. rapa) and kohlrabi (B. oleracea). Overall, we demonstrated that the mesohexaploidization of the two Brassica genomes contributed to their diversification into heading and tuber-forming morphotypes through convergent subgenome parallel selection of paralogous genes.
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