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Open access Sep 2026

Genome-Wide Characterization of PEBP, FD, and GRF Families in Amomum villosum Lour. and Their Potential Roles in Flowering

A detailed understanding of the molecular mechanisms governing the flowering time of Amomum villosum Lour., a medicinal plant within the Zingiberaceae family, is currently lacking. In modern plants, the florigen activation complex (FAC), which includes PEBP, FD/bZIP, and GRF proteins, is known to regulate flowering. In this study, we identified 13 PEBP, 5 FD, and 19 GRF genes within the A. villosum genome and conducted phylogenetic, structural and promoter analysis. Notably, cross-species protein–protein interaction predictions and yeast two-hybrid assays uncovered an unexpected interaction pattern: an AREB3-like FD protein (AvFD5) and a GRF protein (AvGRF13) directly interact with specific PEBP members, whereas canonical FD-like proteins (AvFD1 and AvFD4) did not, which contrasts with the classical rice FAC model (Hd3a-14-3-3-OsFD1). These results imply that FAC assembly in A. villosum may involve alternative components or regulatory mechanisms, potentially indicating lineage-specific divergence within monocots. This research represents the first systematic characterization of FAC core gene families in A. villosum and Zingiberaceae, laying the groundwork for understanding flowering time regulation and facilitating future molecular breeding efforts in this economically significant plant.

Ming Lei, Mei Qin, Wei Lin 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.

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

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