Synergism between Enantiomers Creates Species-Specific Pheromone Blends and Minimizes Cross-Attraction for Two Species of Cerambycid Beetles View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

2016-11

AUTHORS

Linnea R. Meier, Yunfan Zou, Jocelyn G. Millar, Judith A. Mongold-Diers, Lawrence M. Hanks

ABSTRACT

Research over the last decade has revealed extensive parsimony among pheromones within the large insect family Cerambycidae, with males of many species producing the same, or very similar aggregation pheromones. Among some species in the subfamily Cerambycinae, interspecific attraction is minimized by temporal segregation, and/or by minor pheromone components that synergize attraction of conspecifics or inhibit attraction of heterospecifics. Less is known about pheromone-based mechanisms of reproductive isolation among species in the largest subfamily, the Lamiinae. Here, we present evidence that the pheromone systems of two sympatric lamiine species consist of synergistic blends of enantiomers of (E)-6,10-dimethyl-5,9-undecadien-2-ol (fuscumol) and the structurally related (E)-6,10-dimethyl-5,9-undecadien-2-yl acetate (fuscumol acetate), as a mechanism by which species-specific blends of pheromone components can minimize interspecific attraction. Male Astylidius parvus (LeConte) were found to produce (R)- and (S)-fuscumol + (R)-fuscumol acetate + geranylacetone, whereas males of Lepturges angulatus (LeConte) produced (R)- and (S)-fuscumol acetate + geranylacetone. Field experiments confirmed that adult beetles were attracted only by their species-specific blend of the enantiomers of fuscumol and fuscumol acetate, respectively, and not to the individual enantiomers. Because other lamiine species are known to produce single enantiomers or blends of enantiomers of fuscumol and/or fuscumol acetate, synergism between enantiomers, or inhibition by enantiomers, may be a widespread mechanism for forming species-specific pheromone blends in this subfamily. More... »

PAGES

1181-1192

References to SciGraph publications

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  • 2013-03. Field bioassays of cerambycid pheromones reveal widespread parsimony of pheromone structures, enhancement by host plant volatiles, and antagonism by components from heterospecifics in CHEMOECOLOGY
  • 2013-03. Biosynthesis and Site of Production of Sex Pheromone Components of the Cerambycid Beetle, Hedypathes betulinus in JOURNAL OF CHEMICAL ECOLOGY
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  • 2010-12. Effect of Chirality, Release Rate, and Host Volatiles on Response of Tetropium fuscum (F.), Tetropium cinnamopterum Kirby, and Tetropium castaneum (L.) to the Aggregation Pheromone, Fuscumol in JOURNAL OF CHEMICAL ECOLOGY
  • 2015-05. Cerambycid Beetle Species with Similar Pheromones are Segregated by Phenology and Minor Pheromone Components in JOURNAL OF CHEMICAL ECOLOGY
  • 2007-05. Using Generic Pheromone Lures to Expedite Identification of Aggregation Pheromones for the Cerambycid Beetles Xylotrechus nauticus, Phymatodes lecontei, and Neoclytus modestus modestus in JOURNAL OF CHEMICAL ECOLOGY
  • 1980-03. Enantiomer-based specificity in pheromone communication by two sympatricGnathoirichus species (Coleoptera: Scolytidae) in JOURNAL OF CHEMICAL ECOLOGY
  • Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/s10886-016-0782-z

    DOI

    http://dx.doi.org/10.1007/s10886-016-0782-z

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1044286054

    PUBMED

    https://www.ncbi.nlm.nih.gov/pubmed/27771798


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