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A chromosome-level genome of Astilbe chinensis unveils the evolution of a terpene biosynthetic gene cluster

Nature Communications. 2025-11; 
Fangfang Chen, Yan Yao, Hangzhi Zhu, Jie Hu, Aohan Geng, Zhenni Xu, Xueting Fang, Weijia Cheng, Yao Zhi, Yonghong Zhang, Zixin Deng, Tiangang Liu, Li Lu Department of Urology, Zhongnan Hospital of Wuhan University, Hubei Provincial Research Center for Basic Biological Science, School of Pharmaceutical Sciences, Wuhan University
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Protein and Antibody Isolation The codon-optimized sequences of CcTPS2, ItTPS1, and SiTPS2 were synthesized by GenScript Biotech Corporation (Nanjing, China). The supernatant was loaded on a Ni-NTA affinity column (GenScript Biotech Corporation, Nanjing, China) and eluted with an imidazole gradient. Get A Quote

摘要

Astilbe chinensis, a perennial ornamental plant in the Saxifragaceae family, is recognized for its medicinal properties due to its diverse secondary metabolites. Here, we generate a chromosome-level genome assembly of A. chinensis. Our analysis provides compelling evidence that A. chinensis experienced a whole-genome triplication event, which preceded the diversification of the Saxifragaceae family. Furthermore, we identify a biosynthetic gene cluster that includes nine terpene synthase (TPS) genes. Among these, the gene AcTPS2 encodes a eudesma-5,7-diene synthase, and the product is confirmed using nuclear magnetic resonance spectroscopy. A synteny analysis of this gene cluster across various representative pl... More

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