TY - JOUR
T1 - Identification of Sex Pheromone Components of the Hessian Fly, Mayetiola destructor
AU - Andersson, Martin
AU - Haftmann, Jenny
AU - Stuart, Jeffrey J.
AU - Cambron, Sue
AU - Harris, Marion O
AU - Foster, Stephen P
AU - Franke, Stephan
AU - Francke, Wittko
AU - Hillbur, Ylva
PY - 2009
Y1 - 2009
N2 - Coupled gas chromatographic (GC)-electroantennographic detection (EAD) analyses of ovipositor extract of calling Hessian fly, Mayetiola destructor, females revealed that seven compounds elicited responses from male antennae. Four of the compounds-(2S)-tridec-2-yl acetate, (2S,10Z)-10-tridecen-2-yl acetate, (2S,10E)-10-tridecen-2-yl acetate, and (2S,10E)-10-tridecen-2-ol-were identified previously in female extracts. Two new EAD-active compounds, (2S,8Z,10E)-8,10-tridecadien-2-yl acetate and (2S,8E,10E)-8,10-tridecadien-2-yl acetate, were identified by GC-mass spectroscopy (MS) and the use of synthetic reference samples. In a Y-tube bioassay, a five-component blend (1 ng (2S)-tridec-2-yl acetate, 10 ng (2S,10E)-10-tridecen-2-yl acetate, 1 ng (2S,10E)-10-tridecen-2-ol, 1 ng (2S,8Z,10E)-8,10-tridecadien-2-yl acetate, and 1 ng (2S,8E,10E)-8,10-tridecadien-2-yl acetate) was as attractive to male Hessian flies as a similar amount of female extract (with respect to the main compound, (2S,10E)-10-tridecen-2-yl acetate). The five-component blend was more attractive to male flies than a three-component blend lacking the two dienes. Furthermore, the five-component blend was more attractive than a blend with the same compounds but that contained one tenth the concentration of (2S,8E,10E)-8,10-tridecadien-2-yl acetate (more accurately mimicking the ratios found in female extract). This suggests that the ratios emitted by females might deviate from those in gland extracts. In a field-trapping experiment, the five-component blend applied to polyethylene cap dispensers in a 100:10 mu g ratio between the main component and each of the other blend components attracted a significant number of male Hessian flies. Also, a small-plot field test demonstrated the attractiveness of the five-component blend to male Hessian flies and suggests that this pheromone blend may be useful for monitoring and predicting Hessian fly outbreaks in agricultural systems.
AB - Coupled gas chromatographic (GC)-electroantennographic detection (EAD) analyses of ovipositor extract of calling Hessian fly, Mayetiola destructor, females revealed that seven compounds elicited responses from male antennae. Four of the compounds-(2S)-tridec-2-yl acetate, (2S,10Z)-10-tridecen-2-yl acetate, (2S,10E)-10-tridecen-2-yl acetate, and (2S,10E)-10-tridecen-2-ol-were identified previously in female extracts. Two new EAD-active compounds, (2S,8Z,10E)-8,10-tridecadien-2-yl acetate and (2S,8E,10E)-8,10-tridecadien-2-yl acetate, were identified by GC-mass spectroscopy (MS) and the use of synthetic reference samples. In a Y-tube bioassay, a five-component blend (1 ng (2S)-tridec-2-yl acetate, 10 ng (2S,10E)-10-tridecen-2-yl acetate, 1 ng (2S,10E)-10-tridecen-2-ol, 1 ng (2S,8Z,10E)-8,10-tridecadien-2-yl acetate, and 1 ng (2S,8E,10E)-8,10-tridecadien-2-yl acetate) was as attractive to male Hessian flies as a similar amount of female extract (with respect to the main compound, (2S,10E)-10-tridecen-2-yl acetate). The five-component blend was more attractive to male flies than a three-component blend lacking the two dienes. Furthermore, the five-component blend was more attractive than a blend with the same compounds but that contained one tenth the concentration of (2S,8E,10E)-8,10-tridecadien-2-yl acetate (more accurately mimicking the ratios found in female extract). This suggests that the ratios emitted by females might deviate from those in gland extracts. In a field-trapping experiment, the five-component blend applied to polyethylene cap dispensers in a 100:10 mu g ratio between the main component and each of the other blend components attracted a significant number of male Hessian flies. Also, a small-plot field test demonstrated the attractiveness of the five-component blend to male Hessian flies and suggests that this pheromone blend may be useful for monitoring and predicting Hessian fly outbreaks in agricultural systems.
KW - Mayetiola destructor
KW - Hessian fly
KW - Cecidomyiidae
KW - Diptera
KW - Sex pheromone
KW - (2S)-Tridec-2-yl acetate
KW - (2S,10E)-10-tridecen-2-yl acetate
KW - (2S,10E)-10-Tridecen-2-ol
KW - (2S,8Z,10E)-8
KW - 10-Tridecadien-2-yl acetate
KW - (2S,8E,10E)-8
KW - GC-EAD
KW - Y-tube bioassay
KW - Field trapping
KW - Mayetiola destructor
KW - Hessian fly
KW - Cecidomyiidae
KW - Diptera
KW - Sex pheromone
KW - (2S)-Tridec-2-yl acetate
KW - (2S,10E)-10-tridecen-2-yl acetate
KW - (2S,10E)-10-Tridecen-2-ol
KW - (2S,8Z,10E)-8
KW - 10-Tridecadien-2-yl acetate
KW - (2S,8E,10E)-8
KW - GC-EAD
KW - Y-tube bioassay
KW - Field trapping
UR - https://res.slu.se/id/publ/44574
U2 - 10.1007/s10886-008-9569-1
DO - 10.1007/s10886-008-9569-1
M3 - Journal article
C2 - 19067080
SN - 0098-0331
VL - 35
SP - 81
EP - 95
JO - Journal of Chemical Ecology
JF - Journal of Chemical Ecology
IS - 1
ER -