Prostanthera (Lamiaceae) as a 'Cradle of Incense': Chemophenetics of Rare Essential Oils from Both New and Forgotten Australian 'Mint Bush' Species

Title
Prostanthera (Lamiaceae) as a 'Cradle of Incense': Chemophenetics of Rare Essential Oils from Both New and Forgotten Australian 'Mint Bush' Species
Publication Date
2020-11-13
Author(s)
Sadgrove, Nicholas J
Padilla-Gonzalez, Guillermo F
Telford, Ian R H
Greatrex, Ben W
( author )
OrcID: https://orcid.org/0000-0002-0356-4966
Email: bgreatre@une.edu.au
UNE Id une-id:bgreatre
Jones, Graham L
( author )
OrcID: https://orcid.org/0000-0002-6435-1542
Email: gjones2@une.edu.au
UNE Id une-id:gjones2
Andrew, Rose
( author )
OrcID: https://orcid.org/0000-0003-0099-8336
Email: randre20@une.edu.au
UNE Id une-id:randre20
Bruhl, Jeremy J
( author )
OrcID: https://orcid.org/0000-0001-9112-4436
Email: jbruhl@une.edu.au
UNE Id une-id:jbruhl
Langat, Moses K
Melnikovova, Ingrid
Fernandez-Cusimamani, Eloy
Type of document
Journal Article
Language
en
Entity Type
Publication
Publisher
MDPI AG
Place of publication
Switzerland
DOI
10.3390/plants9111570
UNE publication id
une:1959.11/30399
Abstract
The highly aromatic Australian mint bushes from the genus Prostanthera Labill. produce a high yield of essential oil on hydrodistillation. Together with its rich history, horticultural potential, iconic flowers, and aromatic leaves, it achieves high ornamental and culinary value. Species in the genus express highly diverse and chemically unique essential oils that demonstrate intra- and inter-specific patterns that have inspired taxonomic reinterpretation for over a hundred years. Previous studies have conveyed that phenoplastic expression of volatiles creates chemotypes within taxa, adding complexity to chemophenetic exploration. The current study chemically characterised essential oils from 64 highly aromatic specimens, representative of 25 taxa, giving yields as high as >2% g/g. The chemical profiles of essential oils are diverse, but generally include 1,8-cineole and signatory compounds such as sesquiterpene oxides, caryophyllene oxide, kessane and cis-dihydroagarofuran; sesquiterpene alcohols, globulol, epiglobulol, maaliol, prostantherol, spathulenol and ledol; and monoterpene derivatives of common scaffolds, borneol, bornyl acetate, bornanone, linalool and linalyl acetate. As in previous studies, analysis of chemical data confirms that the chemistry strongly agrees with taxonomic classifications. Importantly, as in classical taxonomy, the current chemical study complemented morphological analysis but conveys chemovariation, obscuring the taxonomic agreement. Nevertheless, variation within taxa may be due to environmental factors, meaning that cultivation of species in gardens will create different chemical profiles as compared to those published here.
Link
Citation
Plants, 9(11), p. 1-26
ISSN
2223-7747
Pubmed ID
33202983
Start page
1
End page
26
Rights
Attribution 4.0 International

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