生物
二萜
唇形科
丹参
基因组
基因簇
圣人
基因
植物
遗传学
官房
生物化学
物理
核物理学
作者
Chenyi Li,Lei Yang,Yan Liu,Zhou-Geng Xu,Jian Gao,Yanbo Huang,Jing-Jing Xu,Hang Fan,Yu Kong,Yukun Wei,Wen-Li Hu,Ling-Jian Wang,Qing Zhao,Yonghong Hu,Yijing Zhang,Cathie Martin,Xiao‐Ya Chen
出处
期刊:Cell Reports
[Cell Press]
日期:2022-08-01
卷期号:40 (7): 111236-111236
被引量:34
标识
DOI:10.1016/j.celrep.2022.111236
摘要
The widely cultivated medicinal and ornamental plant sage (Salvia officinalis L.) is an evergreen shrub of the Lamiaceae family, native to the Mediterranean. We assembled a high-quality sage genome of 480 Mb on seven chromosomes, and identified a biosynthetic gene cluster (BGC) encoding two pairs of diterpene synthases (diTPSs) that, together with the cytochromes P450 (CYPs) genes located inside and outside the cluster, form two expression cascades responsible for the shoot and root diterpenoids, respectively, thus extending BGC functionality from co-regulation to orchestrating metabolite production in different organs. Phylogenomic analysis indicates that the Salvia clades diverged in the early Miocene. In East Asia, most Salvia species are herbaceous and accumulate diterpenoids in storage roots. Notably, in Chinese sage S. miltiorrhiza, the diterpene BGC has contracted and the shoot cascade has been lost. Our data provide genomic insights of micro-evolution of growth type-associated patterning of specialized metabolite production in plants.
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