Responses of olfactory receptor neurons of the large pine weevil to a possible deterrent Neutroil® and two other chemicals

Electrophysiological responses of olfactory receptor neurons were measured from the antennal sensilla of large pine weevils (Hylobius abietis L.) at 1 s exposure to Neutroil®-hexane mixture odour as a possible deterrent chemical and, for comparison, to α-pinene, α-pinene-ethanol mixtur...

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Main Authors: Huotari, Matti, Jaskari, Mareena, Annila, Erkki, Lantto, Vilho
Format: Article
Language:English
Published: Finnish Society of Forest Science 2003-01-01
Series:Silva Fennica
Online Access:https://www.silvafennica.fi/article/517
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spelling doaj-e188424ae952405390c2f766faecd8c32020-11-25T03:34:17ZengFinnish Society of Forest ScienceSilva Fennica2242-40752003-01-0137110.14214/sf.517Responses of olfactory receptor neurons of the large pine weevil to a possible deterrent Neutroil® and two other chemicalsHuotari, MattiJaskari, MareenaAnnila, ErkkiLantto, Vilho Electrophysiological responses of olfactory receptor neurons were measured from the antennal sensilla of large pine weevils (Hylobius abietis L.) at 1 s exposure to Neutroil®-hexane mixture odour as a possible deterrent chemical and, for comparison, to α-pinene, α-pinene-ethanol mixture, and ethanol odours, respectively. Neutroil® is a commercial chemical pulp-mill product which has been studied earlier as a deterrent for large pine weevils with preliminary feed tests. In addition, ethanol, hexane and clean carrier air responses were measured. Odour pulses and clean air, as a zero reference value, were directed at a fixed insect antenna in order to induce olfactory responses. Simultaneous olfactory responses, i.e. Hylobius electroantennograms (EAG) and action potential responses, were recorded and these responses of Hylobius olfactory receptor neurons (ORN), such as action potential rates, silent periods and EAG responses, were analyzed for all simultaneous recordings. The exposures to α-pinene, α-pinene-ethanol mixture, pure ethanol and hexane caused an increase of the action potential rate (up to 70 pulses per second) in the ORNs sensitive to these odours, while the Neutroil®-hexane mixture exposures caused either silent periods with a duration between 0.6 and 1.1 s for 1 s exposure pulses or they had no response at all in the ORNs sensitive to the other odours. Thus, the possible deterrence may be caused by inhibition of some pinene-alcohol ORNs.https://www.silvafennica.fi/article/517
collection DOAJ
language English
format Article
sources DOAJ
author Huotari, Matti
Jaskari, Mareena
Annila, Erkki
Lantto, Vilho
spellingShingle Huotari, Matti
Jaskari, Mareena
Annila, Erkki
Lantto, Vilho
Responses of olfactory receptor neurons of the large pine weevil to a possible deterrent Neutroil® and two other chemicals
Silva Fennica
author_facet Huotari, Matti
Jaskari, Mareena
Annila, Erkki
Lantto, Vilho
author_sort Huotari, Matti
title Responses of olfactory receptor neurons of the large pine weevil to a possible deterrent Neutroil® and two other chemicals
title_short Responses of olfactory receptor neurons of the large pine weevil to a possible deterrent Neutroil® and two other chemicals
title_full Responses of olfactory receptor neurons of the large pine weevil to a possible deterrent Neutroil® and two other chemicals
title_fullStr Responses of olfactory receptor neurons of the large pine weevil to a possible deterrent Neutroil® and two other chemicals
title_full_unstemmed Responses of olfactory receptor neurons of the large pine weevil to a possible deterrent Neutroil® and two other chemicals
title_sort responses of olfactory receptor neurons of the large pine weevil to a possible deterrent neutroil® and two other chemicals
publisher Finnish Society of Forest Science
series Silva Fennica
issn 2242-4075
publishDate 2003-01-01
description Electrophysiological responses of olfactory receptor neurons were measured from the antennal sensilla of large pine weevils (Hylobius abietis L.) at 1 s exposure to Neutroil®-hexane mixture odour as a possible deterrent chemical and, for comparison, to α-pinene, α-pinene-ethanol mixture, and ethanol odours, respectively. Neutroil® is a commercial chemical pulp-mill product which has been studied earlier as a deterrent for large pine weevils with preliminary feed tests. In addition, ethanol, hexane and clean carrier air responses were measured. Odour pulses and clean air, as a zero reference value, were directed at a fixed insect antenna in order to induce olfactory responses. Simultaneous olfactory responses, i.e. Hylobius electroantennograms (EAG) and action potential responses, were recorded and these responses of Hylobius olfactory receptor neurons (ORN), such as action potential rates, silent periods and EAG responses, were analyzed for all simultaneous recordings. The exposures to α-pinene, α-pinene-ethanol mixture, pure ethanol and hexane caused an increase of the action potential rate (up to 70 pulses per second) in the ORNs sensitive to these odours, while the Neutroil®-hexane mixture exposures caused either silent periods with a duration between 0.6 and 1.1 s for 1 s exposure pulses or they had no response at all in the ORNs sensitive to the other odours. Thus, the possible deterrence may be caused by inhibition of some pinene-alcohol ORNs.
url https://www.silvafennica.fi/article/517
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