生物合成
脚手架
异源的
化学
生物化学
生物
异源表达
酶
细胞培养
代谢工程
重组DNA
合成生物学
支架蛋白
蛋白质生物合成
细胞生物学
作者
Weiguo Li,Andong Zhu,Wei Li,Shengli Wang,Dongmei Liang,Xiaoguang Yan,Ruiqi Chen,Daoguang Tian,Ziming Liu,Zhaonong Hu,Shaopeng Wei,Yi Zhang,Mingzhang Wen,Qinggele Caiyin,Jianbin Yan,Jianjun Qiao
标识
DOI:10.1038/s41467-026-76205-z
摘要
Celangulin V is a widely used biopesticide derived from Celastrus angulatus, and features antifeedant and insecticidal properties as a dihydro-β-agarofuran (DHβAF) sesquiterpenoid. Its biosynthesis remains largely unexplored. Here, we assemble a chromosome-level and haplotype-resolved reference genome of C. angulatus, with each haplotype assembled into 23 pseudochromosomes and achieving scaffold N50 of 14.31 and 14.01 Mb, respectively. This high-quality genome reveals that a recent β whole-genome triplication (β-WGT) event occurred ~34.3 million years ago, and that the expansion of sesquiterpene synthases and cytochrome P450s from the CYP71BE family results from whole-genome duplication (WGD) event and tandem duplication, respectively. We identify CaTPS16 as a γ-eudesmol synthase, and show that CYP71BE416 further catalyzes the γ-eudesmol to tetrahydrofuran ring α-agarofuran for Celangulin V biosynthesis. We further achieve the de novo synthesis of α-agarofuran in Saccharomyces cerevisiae through combined coexpression of these genes. This study has significantly increases the available genomic resources of the Celastraceae family, improves our understanding of the biosynthetic origins and evolution of the tetrahydrofuran ring in DHβAF sesquiterpenoids, and enables its heterologous bioproduction in microbial chassis. Celangulin V is a widely used biopesticide, however, its biosynthesis remains largely undefined. Here the authors assemble a genome of C. angulatus, elucidate the Celangulin V biosynthesis pathway, and establish bioproduction in S. cerevisiae.
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