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Xia-lian Ou

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Open access Aug 2026

Integrated Transcriptomic Profiling Reveals Candidate Genes for Huperzine A Biosynthesis in Huperzia serrata

Huperzine A (HupA) is a natural Lycopodium alkaloid known for its potent neuroprotective properties through the inhibition of acetylcholinesterase. Nevertheless, the limited understanding of its biosynthesis restricts its broader application. This study integrates full-length and second-generation transcriptomes with the quantification of HupA and its precursor, huperzine B, across various tissues of Huperzia serrata, the primary source plant. By employing phylogenetic clustering, expression profiling, and correlation analysis between gene expression and metabolite abundance, we identified 71 candidate genes from seven enzyme families potentially involved in the synthesis of the HupA backbone, including lysine/ornithine decarboxylases, copper amine oxidases (CAOs), chalcone synthases, and cytochrome P450 monooxygenases. Additionally, 28 genes from two families were identified for modification reactions, specifically 2-oxoglutarate/Fe(II)-dependent dioxygenases and caffeoyl shikimate esterases. Comparative analysis between young and mature leaves revealed 3801 genes with higher expression in young leaves, with 84 showing a high correlation with HupA content across seven families. Protein–protein interaction network analysis indicated possible interactions with transcription factors from the MYB, NF-YC, GRAS, ERF, BHLH, and SAP families. Functional validation of two candidate CAOs in planta confirmed their catalytic roles in amine/alkaloid metabolism. This study provides a theoretical foundation and a set of candidate genes for elucidating the biosynthetic pathway of HupA and related alkaloids in H. serrata.

M. Lei, Jing Wang, Cui Li et al. · 0 citations
Open access Aug 2026

Chromosome-level genome assembly and annotation of the endemic and endangered karst medicinal plant Corydalis saxicola

Corydalis saxicola , an endangered herbaceous plant belonging to the Papaveraceae family and used traditionally as folk medicine, is exclusively endemic to karst habitats. However, the lack of a reference genome limits the implementation of molecular techniques in its breeding, pharmacology and domestication. Here, we present a high-quality chromosome-level genome assembly of C. saxicola based on PacBio HiFi and Hi-C data. The assembled genome size is 240.94 Mb with a contig N50 of 29.21 Mb and BUSCO completeness of 97.71%. Approximately 93.26% of the assembled sequences could be anchored to eight pseudo-chromosomes. A total of 74.29 Mb repeat sequences were identified, which account for 32.33% of the genome. In addition, 24,203 protein-coding genes were identified with a BUSCO completeness of 97.89%. This high-quality genome assembly will serve as a valuable resource for understanding the ecology, genetics, and evolution of C. Saxicola and will help towards its cultivation.

M. Lei, Jing Wang, S. Sooranna et al. · 0 citations