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April 22, 2026Metabolites0 citationsOpen Access

Unveiling the Fragrant Secrets of Dendrobium devonianum: Terpenoid Pathways and Floral Scent Dynamics

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SWShichao WangSHShu HeCYCongjun Yuan

Key Points

  • The research aims to explore the changes in floral scent compounds and the associated gene expressions in Dendrobium devonianum across different developmental stages.
  • Examined volatile organic compounds in flowers at four developmental stages using gas chromatography and mass spectrometry.
  • Performed transcriptome analysis to assess gene expression related to scent production.
  • Identified terpenoid biosynthesis pathways contributing to floral fragrance.
  • Floral terpenoids and esters were found to be most abundant during the full bloom stage.
  • A total of 664 volatile organic compounds were identified, with several terpenoids likely contributing to the floral scent.
  • Eight key regulatory genes involved in terpenoid metabolism were identified, highlighting their role in fragrance formation.

Abstract

Background/Objectives: The orchid Dendrobium devonianum Paxt., valued for its ornamental and medicinal properties, is widely used in horticulture, medicine, and food industries. Methods: This study investigated dynamic changes in aroma-active volatile organic compounds (VOCs) and associated gene expression in D. devonianum flowers across four developmental stages (bud, half bloom, full bloom, and aging) using headspace solid-phase microextraction, gas chromatography–mass spectrometry, and transcriptome analysis. Results: Floral VOCs, particularly volatile terpenoids and esters, were most abundant at full bloom. Among the 664 VOCs identified, α-hemelene, β-bisabolene, δ-naphthalene, perillyl alcohol, L-perillyl alcohol, terpinen-4-ol, 2-(4-methylphenyl)propan-2-ol, cis-3-hexenyl butyrate, and α-pinene were likely to contribute to floral scent. Terpene biosynthesis pathways played a pivotal role in floral fragrance formation. A comprehensive terpenoid biosynthesis pathway for D. devonianum floral scent was proposed, and eight genes encoding key regulatory enzymes were identified. Conclusions: These results provide new insights into terpenoid metabolism in Dendrobium and may guide future research on the utilization of floral scent.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69e865126e0dea528dde9b34https://doi.org/10.3390/metabo16040276
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