Effects of enantiomeric blend of verbenone on response of Ips paraconfusus to naturally produced aggregation pheromone in the laboratory

The aggregation pheromone produced by male Ips paraconfusus (Coleoptera: Scolytidae) tunneling in Monterey pine, Pinus radiata, logs was trapped on Porapak Q. A concentration of an extract of trapped volatiles that attracted beetles was determined in the laboratory through a concentration-response a...

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Bibliographic Details
Published in:Journal of chemical ecology Vol. 23; no. 12; pp. 2825 - 2839
Main Authors: McPheron, L J, Seybold, S J, Storer, A J, Wood, D L, Ohtsuka, T, Kubo, Isao
Format: Journal Article
Language:English
Published: 01-12-1997
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Summary:The aggregation pheromone produced by male Ips paraconfusus (Coleoptera: Scolytidae) tunneling in Monterey pine, Pinus radiata, logs was trapped on Porapak Q. A concentration of an extract of trapped volatiles that attracted beetles was determined in the laboratory through a concentration-response analysis of walking behavior of males and females. The interruptant effects of four concentrations of verbenone on response to a constant concentration of this naturally produced aggregation pheromone were tested with males and females. Independent of its enantiomeric composition [99.5% (S)-(-), 93.1% (S)-(-), and 98.3% (R)-(+)], verbenone significantly reduced the percentage of females (but not males) reaching the attractant source. However, when the time required for beetles of both sexes taken together to reach the attractant source was considered, verbenone of higher enantiomeric purity had a greater effect on beetle behavior. Solutions of 99.5% (S)-(-)- and 98.3% (R)-(+)-verbenone increased the time required for beetles to reach the attractive source when compared to 93.1% (S)-(-)-verbenone. When pooled across enantiomeric blends, increasing concentrations of verbenone resulted in slower responses in beetles that reached the attractant source within 2 min. Males and females did not respond to verbenone alone.
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ISSN:0098-0331
DOI:10.1023/A:1022571212416