Identification of the Female-Produced Sex Pheromone of an Invasive Greenhouse Pest, the European Pepper Moth (Duponchelia fovealis)
The European pepper moth ( Duponchelia fovealis, Lepidoptera, Crambidae, Spilomelinae) is an invasive pest of greenhouses in many countries, causing serious damages to horticultural plants. Coupled gas chromatographic-electroantennographic detection analysis of the female gland extract revealed two...
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Veröffentlicht in: | Journal of chemical ecology 2018-03, Vol.44 (3), p.257-267 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The European pepper moth (
Duponchelia fovealis,
Lepidoptera, Crambidae, Spilomelinae) is an invasive pest of greenhouses in many countries, causing serious damages to horticultural plants. Coupled gas chromatographic-electroantennographic detection analysis of the female gland extract revealed two antennally active peaks. Using coupled gas chromatography–mass spectrometry (GC-MS), one was identified as (
Z
)-11-hexadecenal (Z11–16:Ald); however, further analysis on different types of capillary columns indicated that the second active compound has two different isomers, (
E
)-13-octadecenal (E13–18:Ald) and (
Z
)-13-octadecenal (Z13–18:Ald). The approximate ratio of E13–18:Ald, Z13–18:Ald and Z11–16:Ald in the crude pheromone gland extract was 10:1:0.1, respectively. Single sensillum recordings showed that there was one sensory neuron that responded with a high amplitude spike to both E13–18:Ald and Z13–18:Ald, while another neuron housed in the same sensillum responded to Z11–16:Ald. Field evaluation of the identified compounds indicated that the E13–18:Ald was necessary to evoke the attraction of males; although the presence of Z13–18:Ald and Z11–16:Ald increased the catches in traps. The highest number of caught males was achieved when E13–18:Ald, Z13–18:Ald and Z11–16:Ald were present in baits in the same ratio as in the female gland extract. This pheromone can be used in a monitoring strategy and could potentially lead to the development of mating disruption. |
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ISSN: | 0098-0331 1573-1561 |
DOI: | 10.1007/s10886-018-0928-2 |