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Chromosome-level genome of Himalayan yew provides insights into the origin and evolution of the paclitaxel biosynthetic pathway

Mol Plant. 2021-07; 
Jian Cheng , Xiao Wang, Xiaonan Liu , Xiaoxi Zhu , Zihe Li , Huanyu Chu , Qian Wang , QianQian Lou , Bijun Cai , Yiqun Yang , Xiaoyun Lu , Kai Peng , Dingyu Liu , Yuwan Liu , Lina Lu , Huan Liu , Ting Yang , Qijin Ge , Chengcheng Shi , Guichun Liu , Zhiwei Dong , Xun Xu , Wen Wang , Huifeng Jiang , Yanhe Ma
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摘要

Taxus, commonly known as yew, is a well-known gymnosperm with great ornamental and medicinal value. In this study, by assembling a chromosome-level genome of the Himalayan yew (Taxus wallichiana) with 10.9 Gb in 12 chromosomes, we revealed that tandem duplication acts as the driving force of gene family evolution in the yew genome, resulting in the main genes for paclitaxel biosynthesis, i.e. those encoding the taxadiene synthase, P450s, and transferases, being clustered on the same chromosome. The tandem duplication may also provide genetic resources for the nature to sculpt the core structure of taxoids at different positions and subsequently establish the complex pathway of paclitaxel by neofunctionalization... More

关键词

Taxus; gene cluster; genome sequencing; paclitaxel biosynthetic pathway; tandem duplication.