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A comparative study of pheromone perception in two species of Noctuid moths

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Abstract

The electrical activity of single olfactory receptor neurons in male soybean looper (SBL) Pseudoplusia includens(Walker) and cabbage looper (CL) Trihoplusia ni(Hübner) moths was evaluated in response to stimulation with fixed amounts of the individual components of their respective pheromone blends. In common with earlier observations in the CL, there are at least two classes of morphologically distinct pheromone sensitive sensilla on the antenna of male SBL, each of which contains two olfactory receptor neurons. In both species, one class of sensilla contains an olfactory receptor neuron sensitive to (Z)-7-dodecen-1-ol acetate (Z-7, 12:AC), the major component in each insect's blend, and a companion receptor neuron which is sensitive to (Z)-7-dodecen-1-ol (Z7,12: OH). In both species the second class of sensilla contains an olfactory receptor neuron which is sensitive to one of the minor components of the pheromone blend. (Z)-5-dodecen-1-ol acetate (Z-5,12:AC) is an effective stimulus in SBL, whereas (Z)-7-tetradecen-1-ol acetate (Z-7,14:AC) is an effective stimulus in CL. However, these two stimulatory compounds have been identified only in the female CL gland; neither has been found in the SBL gland. Thus, in contrast to the CL, which has receptor neurons which are responsive exclusively to conspecific pheromone components, the SBL has a class of receptor neurons which is responsive to a minor component of another species' pheromone blend. Field-trapping assays in which Z-5,12:AC is added to the SBL blend suggest that this single CL component is a powerful inhibitor of male SBL behavioral responses to conspecific pheromone blends. The difference observed in the specificity of the receptor neurons in this second class of sensilla are thus believed to play an integral role in the isolation processes that are maintained between these two species and may well account for the observed behavioral differences in their responses to heterospecific pheromone blends.

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References

  • Bjostad, L. B., Gaston, L. K., Noble, L. L., Moyer, J. H., and Shorey, H. H. (1980). Dodecyl acetate, a second pheromone component of the cabbage looper moth,Trichoplusia ni.J. Chem. Ecol. 6: 707–734.

    Google Scholar 

  • Bjostad, L. B., Linn, C. E., Du, J.-W., and, Roelofs, W. L. (1984). Identification of new sex pheromone components inTrichoplusia ni, predicted from biosynthetic precursors,J. Chem. Ecol. 10: 1309–1323.

    Google Scholar 

  • Eichlin, T. D. (1975). Guide to the adult and larval Plusiinae of California. Occa. Pap. Entomol., State Calif. Dept. Food Agr. No. 21.

  • Grant, G. G. (1971). Electroantennogram responses to the scent brush secretions of several male moths.Ann. Entomol. Soc. Am. 64: 1428–1431.

    Google Scholar 

  • Grant, A. J., and O'Connell, R. J. (1986). Neurophysiological and morphological investigations of pheromone-sensitive sensilla on the antenna of maleTrichoplusia ni.J. Insect Physiol. 32: 503–515.

    Google Scholar 

  • Grant, A. J., O'Connell, R. J., and Hammond, A. M. (1987). A comparative study of the neurophysiological response characteristics of olfactory receptor neurons in two species of Noctuid moths.Ann. N.Y. Acad. Sci. (in press).

  • Inscoe, M. M. (1982). Insect Attractants, Attractant pheromones, and related compounds. In Kydonieus, A. F., and Beroza, M. (eds.),Insect Suppression with Controlled Release Pheromone Systems, CRC Press, Boca Raton, Fla., pp. 201–295.

    Google Scholar 

  • Landolt, P. J., and Heath, R. R. (1987). Role of female-produced sex pheromone in behavioral reproductive isolation betweenTrichoplusia ni (Hübner) andPseudoplusia includens (Walker) (Lepidoptera: Noctuidae, Plusiinae).J. Chem. Ecol. 13: 1005–1018.

    Google Scholar 

  • Leppla, N. C. (1983). Chemically mediated reproductive isolation between cabbage looper and soybean looper moths (Lepidoptera: Noctuidae).Environ. Entomol. 12: 1760–1765.

    Google Scholar 

  • Leppla, N. C., Hamilton, E. W., Guy, R. H., and Lee, F. L. (1979). Circadian rhythms of locomotion in six noctuid species.Ann. Entomol. Soc. Am. 72: 209–215.

    Google Scholar 

  • Linn, C. E., Jr., Campbell, M. G., and Roelofs, W. L. (1986). Male moth sensitivity to multicomponent pheromones: Critical role of female-released blend in determining the functional role of components and active space of the pheromone.J. Chem. Ecol. 12: 659–668.

    Google Scholar 

  • Linn, C. E., Jr., Du, J., Hammond, A., and Roelofs, W. L. (1987a). Identification of unique pheromone components for the soybean looper moth,Pseudoplusia includens J. Chem. Ecol. 13: 1351–1360.

    Google Scholar 

  • Linn, C. E., Jr., Hammond, A., Du, J. and Roelofs, W. L. (1987b). Specificity of male response to multicomponent pheromones in the noctuid moths,Trichoplusia ni andPseudoplusia includens. J. Chem. Ecol. (in press).

  • Mayer, M. S., and McLaughlin, J. R. (1975). An annotated compendium of insect sex pheromones. Florida Agricultural Experiment Stations Monograph Series No. 6, Institute for Food and Agricultural Sciences, Gainesville.

    Google Scholar 

  • Mayer, M. S., and Mankin, R. W. (1986). Neurobiology of pheromone perception. In Kerkut, G. A., and Gilbert, L. I. (eds.),Comprehensive Insect Physiology, Biochemisty and Pharmacology, Pergamon Press, New York.

    Google Scholar 

  • Mayer, M. S., and Mankin, R. W. (1987). A linkage between coding of quantity and quality of pheromone gland components by receptor cells ofTrichoplusia ni. Ann. N. Y. Acad. Sci. (in press).

  • McLaughlin, J. R., Mitchell, E. R., Chambers, D. L., and Tumlinson, J. H. (1974). Perception of Z-7,dodecen-1-ol and modification of the sex pheromone response of male loopers.Environ. Entomol. 3: 677–680.

    Google Scholar 

  • Mitchell, E. R. (1972). Female cabbage loopers inhibit attraction of male soybean loopers.Environ. Entomol. 1: 444–446.

    Google Scholar 

  • Mitchell, E. R. (1973). Nocturnal activities of adults of three species of loopers based on collections in pheromone traps.Environ. Entomol. 2: 1078–1080.

    Google Scholar 

  • Mitchell, E. R., and Tumlinson, J. H. (1973). An attractant for males ofSpodoptera dolichos (Lepidoptera: Noctuidae).Ann. Entomol. Soc. Am. 66: 917–918.

    Google Scholar 

  • O'Connell, R. J. (1975). Olfactory receptor responses to sex pheromone components in the redbanded leafroller moth.J. Gen. Physiol. 65: 179–205.

    PubMed  Google Scholar 

  • O'Connell, R. J., Kocsis, W. A., and Schoenfeld, R. L. (1973). Minicomputer identification and timing of nerve impulses mixed in a single recording channel.Proc. IEEE 61: 1615–1621.

    Google Scholar 

  • O'Connell, R. J., Grant, A. J., Mayer, M. S., and Mankin, R. M. (1983). Morphological correlates of differences in pheromone sensitivity in insect sensilla.Science 220: 1408–1410.

    Google Scholar 

  • SAS Institute Inc. (1982).SAS User's Guide: Statistics, SAS Institute Inc., Cary, N.C.

    Google Scholar 

  • Steck, W. F., Underbill, E. W., and Chisholm, M. D., (1982). Structure-activity relationships in sex attractants for North American Noctuid moths.J. Chem. Ecol. 8: 731–754.

    Google Scholar 

  • Tumlinson, J. H., Mitchell, E. R., Browner, S. M., Mayer, M. S., Green, N., Hines, R., and Lindquist, D. A. (1972a). Cis-7-dodecen-1-ol, a potent inhibitor of the cabbage looper sex pheromone.Envir. Entomol. 1: 354–358.

    Google Scholar 

  • Tumlinson, J. H., Mitchell, E. R., Browner, S. M., and Lindquist, D. A., (1972b). A sex pheromone for the soybean looper.Environ. Entomol. 1: 466–468.

    Google Scholar 

  • Van Der Pers, J. N. C., and Lofstedt, C. (1986). Signal-response relationship in sex pheromone communication. In Paine, T. L., Birch, M. C., and Kennedy, C. E. J. (eds.),Mechanisms in Insect Olfaction, Clarendon Press, Oxford, pp. 235–241.

    Google Scholar 

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Grant, A.J., O'Connell, R.J. & Hammond, A.M. A comparative study of pheromone perception in two species of Noctuid moths. J Insect Behav 1, 75–96 (1988). https://doi.org/10.1007/BF01052505

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