Distinguishing native and plantation-grown mahogany (swietenia macrophylla) timber using chromatography and high-resolution quadrupole time-of-flight mass spectrometry

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DOI

https://doi.org/10.22382/wfs-2023-04

Language of the publication
English
Date
2023-08-16
Type
Article
Author(s)
  • Doh Wook Kim, Joseph
  • Brunswick, Pamela
  • Shang, Dayue
  • Evans, Philip D.
Publisher
Society of Wood Science and Technology (SWST)

Abstract

Plantation-grown mahogany (Swietenia macrophylla) from Fiji has been preferred as a sus- tainable wood source for the craftingof electric guitars because its trade is not restricted by Convention on International Trade in Endangered Species of Wild Fauna and Flora (CITES), unlike S. macrophylla sourced from native forests. Ability to differentiate between the two wood types would deter sale of illegally harvested native-grown S. macrophylla to luthiers and other artisans. The chemical composition of wood is influenced bycambial age and geographical factors, and there are chemical differences between S. macrophylla grown in different regions. This study tested the ability of high-resolution mass spectrometry to chemotypically dif- ferentiate plantation-grown Fijian S. macrophylla from the same wood species obtained from native forests. Multiple heartwood specimens of both wood types were extracted and chromatographically profiled using gas and liquid chromatography tandem high-resolution quadrupole time-of-flight massspectrometry (GC/QToF, LC/QToF). Visual comparison of mass spectral ions, together with modern analytical data-mining techniques,were employed to screen the results. Principal component analysis scatter plots with 95% confidence ellipses showed unambiguousseparation of the two wood types by GC/LC/QToF. We conclude that screening of heartwood extractives using high-resolution massspectrometry offers an effective way of identifying and sepa- rating plantation-grown Fijian S. macrophylla from wood grown in native forests.

Subject

  • Trees,
  • Endangered species,
  • Identification

Rights

Pagination

18-30

Peer review

Yes

Open access level

Gold

Identifiers

ISSN
0735-6161

Article

Journal title
Wood and Fiber Science
Journal volume
55
Journal issue
1
Submitted date
2023-03

URI

Collection(s)

Biodiversity

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