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1.
J Chem Ecol ; 34(1): 107-11, 2008 Jan.
Article in English | MEDLINE | ID: mdl-18064523

ABSTRACT

While testing traps baited with a blend of geranyl octanoate and geranyl butanoate (pheromone components previously identified for Agriotes lineatus, Coleoptera, Elateridae) in Portugal and Bulgaria, large numbers of the closely related Agriotes proximus were captured. In the literature, two different compounds, (E,E)-farnesyl acetate and neryl isovalerate had previously been identified as pheromone components of A. proximus. Subsequent field tests, conducted in several European countries, revealed that A. proximus was weakly attracted to geranyl butanoate on its own, while A. lineatus was weakly attracted to geranyl octanoate on its own. However, the largest catches for both species were observed with a blend of both compounds. No A. proximus was caught in traps baited with the blend of (E,E)-farnesyl acetate and neryl isovalerate at any of the test sites. In electroantennographic studies, antennae of male A. proximus and A. lineatus both gave greater responses to geranyl butanoate than to geranyl octanoate, suggesting that the perception of these two compounds was similar for both species. A 1:1 blend of geranyl octanoate and geranyl butanoate can be used as a bait in traps for the detection and monitoring of both A. lineatus and A. proximus in many European countries.


Subject(s)
Butyrates/pharmacology , Caprylates/pharmacology , Coleoptera/drug effects , Pheromones/pharmacology , Sense Organs/drug effects , Animals , Coleoptera/physiology , Electrophysiology , Male , Sense Organs/physiology
2.
Pest Manag Sci ; 59(4): 417-25, 2003 Apr.
Article in English | MEDLINE | ID: mdl-12701702

ABSTRACT

Based on analysis of pheromone gland extracts, highly attractive new baits have been developed for three click beetle pests. That for Agriotes brevis is a mixture of geranyl butanoate and (E,E)-farnesyl butanoate, and that for A rufipalpis and A sordidus contains geranyl hexanoate alone. From known data from species populating Russia, optimized bait compositions for species in Central and Western Europe were developed as follows: geranyl octanoate + geranyl butanoate for A lineatus, geranyl isovalerate for A litigiosus, geranyl hexanoate + geranyl octanoate for A obscurus, geranyl butanoate alone for A sputator and (E,E)-farnesyl acetate alone for A ustulatus. Although slight differences were found in gland contents with A litigiosus var laichartingi and fenotypus typicus, nevertheless there were no differences in response to the optimum bait. There were no differences in pheromone composition or response to the optimized bait between the two morphological forms ('black' and 'red') of A ustulatus. As a result of these studies, highly effective pheromone baits are now available for monitoring and population reduction in all important pest click beetle species in Central and Western Europe.


Subject(s)
Coleoptera/metabolism , Farnesol/analogs & derivatives , Juvenile Hormones/pharmacology , Pheromones/pharmacology , Animals , Butyric Acid/chemistry , Butyric Acid/pharmacology , Coleoptera/drug effects , Europe , Farnesol/chemistry , Farnesol/pharmacology , Juvenile Hormones/chemistry , Pheromones/isolation & purification , Terpenes/chemistry , Terpenes/pharmacology
3.
J Chem Ecol ; 28(8): 1641-52, 2002 Aug.
Article in English | MEDLINE | ID: mdl-12371816

ABSTRACT

Geranyl butyrate (GB) and (E, E)-farnesyl butyrate (FB) were identified in the pheromone gland extract of females of the click beetle, Agriotes brevis (Candeze) (Coleoptera: Elateridae) as the major sex pheromone components. Polyethylene vial dispensers containing 20-200 mg of a 1:1 mixture caught high numbers of beetles. Captures did not decrease even after 73 days of field exposure of dispensers. At sites where both Agriotes sputator L. and A. brevis were present, the above baits were selectively catching only A. brevis, despite the fact that GB is also the main pheromone component of A. sputator, suggesting that FB has a role in reproductive isolation. In the early part of the season, traps into which the insects could both crawl and fly captured more A. brevis than designs where the insects could only fly in. Trap design was not important later in the season. This indicates the need for future development of a trap suitable for use throughout the whole season.


Subject(s)
Coleoptera/chemistry , Sex Attractants/chemistry , Animals , Female , Gas Chromatography-Mass Spectrometry , Magnetic Resonance Spectroscopy , Male , Seasons
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