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April 27, 2026Holzforschung0 citationsOpen Access

Variations in the terpenoid composition of naturally grown Lindera umbellata var. membranacea trees with different bark thicknesses

RSRui SasakiHAHaruna AisoTATatsuya Ashitani

Key Points

  • This research aims to clarify how bark thickness affects terpenoid composition in Lindera umbellata var. membranacea trees.
  • Analyzed bark extracts from three trees with varying bark thickness; trees A and B assessed for height variation.
  • Used gas chromatography-mass spectrometry and gas chromatography-flame ionization detection to analyze terpenoid composition.
  • Examined radial variations from the inner bark to periderm in tree C.
  • Terpenoid composition varied significantly with increasing bark thickness in trees A and B.
  • In tree C, the peak areas of 1,8-cineole and terpinen-4-ol increased with phloem thickness.
  • The enantiomeric ratio of linalool changed as the inner bark developed, indicating a defensive function.

Abstract

Abstract To clarify the variations in terpenoid composition due to bark development, bark extracts from three trees of Lindera umbellata var. membranacea were analyzed. Stem discs were collected at different heights from two trees (A and B) to assess the variation in terpenoid composition relative to bark thickness. The remaining tree (C) was used to examine radial variations in terpenoid composition from the inner bark to the periderm. Terpenoid composition and the enantiomeric ratio of linalool were analyzed using gas chromatography-mass spectrometry and gas chromatography-flame ionization detection. The terpenoid composition of the bark changed during bark development, and these terpenoid proportion changed with increasing bark thickness. The ratios of terpinen-4-ol, bornyl acetate, and β -bisabolene in trees A and B, and those of α -pinene, camphene, β -pinene, 3-carene, limonene, 1,8-cineole, α -terpineol, and caryophyllene in tree B tended to increase with increasing bark thickness. Furthermore, the peak areas of 1,8-cineole and terpinen-4-ol in the bark of tree C increased as the phloem thickness increased. Additionally, the enantiomeric ratio of linalool varied with the inner bark development of tree C. Obtained results suggested that the terpenoids detected in this study provide a defensive function against wounding, especially in the phloem of L. umbellata var. membranacea .

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Cite This Study

Sasaki et al. (2026) studied this question.

synapsesocial.com/papers/69eefdd1fede9185760d492fhttps://doi.org/10.1515/hf-2025-0079
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