Biotechnology Bulletin ›› 2026, Vol. 42 ›› Issue (7): 163-172.doi: 10.13560/j.cnki.biotech.bull.1985.2025-1156

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Genome-wide Identification and Characterization of UDP-glycosyltransferase Gene Family in Gastrodia elata

RAN Dan-dan1, TAI Sen-lin1, OU Xiao-hong1,2, ZHOU Tao1,2, XU Jiao1,2()   

  1. 1.Resource Institute for Chinese & Ethnic Materia Medica, Guizhou University of Traditional Chinese Medicine, Guiyang 550025
    2.Guizhou Key Laboratory for Germplasm Innovation and Resource-Efficient Utilization of Dao-di Herbs, Guiyang 550025
  • Received:2025-10-27 Online:2026-07-26 Published:2026-07-20
  • Contact: XU Jiao E-mail:xujiao2008mzk@163.com

Abstract:

Objective UDP-glucosyltransferase (UGT)-mediated glycosylation is a critical step in plant pigment biosynthesis. This study aimed to identify and analyze the structure and function of the UGT gene family in Gastrodia elata Bl. f. glauca S. Chow, providing a foundation for investigating the molecular mechanisms underlying stem color formation in different G. elata ecotypes. Method UGT genes were identified using BLAST alignment combined with searches against the Pfam and InterPro databases. TBtools software was employed to analyze their physicochemical properties, structural characteristics, chromosomal localization, phylogenetic relationships, synteny, and cis-acting elements. Based on transcriptomic data, RT-qPCR, total flavonoid content assays, and co-expression network analysis, key UGT genes involved in stem color formation were identified. Result Fifty UGT genes were identified in the G. elata Bl. f. glauca S. Chow genome, and all contained the conserved UDPGT domain. Phylogenetic analysis classified them into 10 groups, with clades Ⅲ and Ⅳ having the largest number of members, and some members showing clustered distribution on chromosomes. The UGT promoter regions were enriched with light-responsive and hormone-responsive cis-elements. Synteny analysis identified 22 and 1 collinear UGT gene pairs between G. elata Bl. f. glauca S. Chow and Dendrobium officinale as well as Arabidopsis thaliana, respectively. Significant differences were observed in the relative expressions of UGT genes and total flavonoid accumulation varied among stems of different G. elata ecotypes. Specifically, GeUGT72_04, GeUGT73_11, and GeUGT73_15 had distinct expression patterns across the three ecotypes, showing significant correlations with total flavonoid content. Co-expression network analysis demonstrated that GeUGT73_15 was significantly positively correlated with flavonoid biosynthesis genes such as PER42 and FLS. Conversely, GeUGT73_11 was significantly negatively correlated with genes including CHS_1 and 4CL. Conclusion Stem color differences among different G. elata ecotypes are closely associated with flavonoid accumulation. GeUGT72_04, GeUGT73_11, and GeUGT73_15 may regulate flavonoid biosynthesis in G. elata stems and participate in the regulatory process of stem color formation, serving as key candidate genes for mediating G. elata stem color differentiation.

Key words: Gastrodia elata, UDP-glycosyltransferase gene family, bioinformatics, flavonoids, stem color, expression pattern, correlation analysis, co-expression network