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  5. The Diversity of Volatile Compounds in Australia’s Semi-Desert Genus Eremophila (Scrophulariaceae).

The Diversity of Volatile Compounds in Australia’s Semi-Desert Genus Eremophila (Scrophulariaceae).

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Resource type
Journal article
Creator (person)
Sadgrove, Nicholas J.
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Padilla-González, Guillermo F.
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Green, Alison
Langat, Moses K.
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Mas-Claret, Eduard
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Lyddiard, Dane
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Klepp, Julian
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Legendre, Sarah V. A.-M.
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Greatrex, Ben W.
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Jones, Graham L.
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Ramli, Iskandar M.
Leuner, Olga
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Fernandez-Cusimamani, Eloy
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Date published
April 16, 2021
Abstract
Australia’s endemic desert shrubs are commonly aromatic, with chemically diverse terpenes and phenylpropanoids in their headspace profiles. Species from the genus Eremophila (Scrophulariaceae ex. Myoporaceae) are the most common, with 215 recognised taxa and many more that have not yet been described, widely spread across the arid parts of the Australian continent. Over the years, our research team has collected multiple specimens as part of a survey to investigate the chemical diversity of the genus and create leads for further scientific enquiry. In the current study, the diversity of volatile compounds is studied using hydrodistilled essential oils and leaf solvent extracts from 30 taxa. Several rare terpenes and iridoids were detected in chemical profiles widely across the genus, and three previously undescribed sesquiterpenes were isolated and are assigned by 2D NMR—E-11(12)-dehydroisodendrolasin, Z-11-hydroxyisodendrolasin and 10-hydroxydihydro-α-humulene acetate. Multiple sampling from Eremophila longifolia, Eremophila arbuscular, Eremophila latrobei, Eremophila deserti, Eremophila sturtii, Eremophila oppositifolia and Eremophila alternifolia coneys that species in Eremophila are highly chemovariable. However, taxa are generally grouped according to the expression of (1) furanosesquiterpenes, (2) iridoids or oxides, (3) mixtures of 1 and 2, (4) phenylpropanoids, (5) non-furanoid terpenes, (6) mixtures of 4 and 5, and less commonly (7) mixtures of 1 and 5. Furthermore, GC–MS analysis of solvent-extracted leaves taken from cultivated specimens conveys that many heavier ‘volatiles’ with lower vapour pressure are not detected in hydrodistilled essential oils and have therefore been neglected in past chemical studies. Hence, our data reiterate that chemical studies of the genus Eremophila will continue to describe new metabolites and that taxon determination has limited predictive value for the chemical composition.
Funder
Funder nameAwards
Česká Zemědělská Univerzita v Praze, Czechia
Internal Grant Agency of FTA, grant number 20205004
Journal title
Plants
Volume
10
Issue
4
Article number
785
Publisher
MDPI AG
Place of publication
Basel, Switzerland
eISSN
2223-7747
Date accepted
April 13, 2021
Official URL
https://doi.org/10.3390/plants10040785
Related URL
https://www.mdpi.com/2223-7747/10/4/785
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by/4.0/
DOI
10.3390/plants10040785
Keywords
Essential oil
Australia
Terpene
Eremophila
Furanosesquiterpene
Phenylpropanoid
Additional information
This article belongs to the Special Issue Essential Oils of Plants (Chemical Composition, Variation and Properties.
Managed by the British Library and supported by the AHRC

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