The telomere-to-telomere genome and comparative analysis from algae to higher plants reveal origin and evolution of biosynthesis of chlorogenic acid pathway and production in ramie (Boehmeria nivea L.). (PubMed, Hortic Res) - Aug 12, 2026 - "Subsequently, we identified five potential key genes involved in its biosynthesis via transcriptomic and metabolomic analyses, and characterized the metabolic pathway of chlorogenic acid biosynthesis in ramie through protease activity assays. Our T2T assembly represents the complete reference of genome and provides a valuable resource for genome and genetic studies in ramie; the proposed metabolic pathway of chlorogenic acid biosynthesis provided a basis for the improvement of chlorogenic acid content in ramie breeding." Journal
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Fu Li; Hangfan Niu; Jianrong Chen; Jie Guo; Qian Lin; Song Gao; Touming Liu; Xintong Zhou; Yangyu Tao; Yanzhou Wang; Yifan Ding; Yuwei Guo
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