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  4. Beyond terpenoids: methoxy-phenyl-oxime as the major volatile in a novel Phalaenopsis cultivar
 
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Beyond terpenoids: methoxy-phenyl-oxime as the major volatile in a novel Phalaenopsis cultivar

Journal
Plant Signaling and Behavior
Journal Volume
21
Journal Issue
1
Start Page
Article number: 2689736
ISSN
1559-2324
Date Issued
2026-06-17
Author(s)
Kao, Wenny Mei-Wen
YI-SHENG CHENG  
DOI
10.1080/15592324.2026.2689736
URI
https://www.scopus.com/record/display.uri?eid=2-s2.0-105042079026&origin=resultslist
https://scholars.lib.ntu.edu.tw/handle/123456789/739288
Abstract
Floral scent is a primary determinant of pollinator attraction and reproductive success in the Orchidaceae family. In the genus Phalaenopsis, floral volatiles are typically dominated by terpenoids; however, this study identifies a significant exception in the novel cultivar Phalaenopsis DSM2049. Utilizing thin film solid phase microextraction (TF SPME) coupled with thermal desorption-gas chromatography–mass spectrometry (TD-GC–MS), Methoxy-Phenyl-Oxime (MPO) was identified as the predominant floral volatile. Mass spectrometry confirmed a molecular formula of C₈H₉NO₂, characterized by a molecular ion at m/z 151 [M]⁺, a base peak at m/z 133 [M–H₂O]⁺, and a phenyl ring at m/z 77. The compound was detected as two distinct E/Z geometric isomers with retention times of 12.35 and 12.32 minutes. MPO emission followed an extreme diurnal ON/OFF rhythm, with peak levels at 07:30–09:00 being 13.4-fold higher than those recorded at 01:30–03:00, while only trace amounts were detectable by mid-afternoon. These findings represent the first report of an oxime as the dominant scent component in Phalaenopsis, challenging the conventional view of terpenoid exclusivity in the genus and suggesting a highly regulated biosynthetic mechanism with specialized ecological implications for pollinator recruitment.
Subjects
floral scent
Methoxy-Phenyl-Oxime
MPO
on/off emission
orchid volatiles
oxime
Phalaenopsis
Publisher
Informa UK Limited
Type
journal article

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