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SCANNING ELECTRON MICROSCOPIC STUDY OF WAX DISTRIBUTION ON THE BALSAM WOOLLY APHID, ADELGES PICEAE (HOMOPTERA: ADELGIDAE)

Published online by Cambridge University Press:  31 May 2012

Arthur Retnakaran
Affiliation:
Forest Pest Management Institute, Canadian Forestry Service, Sault Ste. Marie, Ontario P6A 5M7.
Terry Ennis
Affiliation:
Forest Pest Management Institute, Canadian Forestry Service, Sault Ste. Marie, Ontario P6A 5M7.
Luc Jobin
Affiliation:
Laurentian Forest Research Centre, Canadian Forestry Service, Ste. Foy, Quebec G1V 4C7.
Jeffrey Granett
Affiliation:
Department of Entomology, University of Maine, Orono, Maine 04469.

Abstract

Scanning electron micrographs of balsam wooly aphid, Adelges piceae Ratz., show ribbon-like wax secretion in the dorso-median, marginal, and inter-tergal regions. Longitudinal grooves in the ribbons indicate that secretions from a row of cells fuse together to form bands of wax. Most of the ribbons appear as extensions of the tergal sclerites. Post-notal plates are conspicuous in the dormant first instar, and in the adults characteristic wax plates with crater-like pits are evident. The chemistry of wax in related species and a rationale for control using juvenile hormone analogs are discussed.

Résumé

Une étude au microscope électronique à balayage du Puceron lanigère du sapin, Adelges piceae Ratz., montre que la secrétion de la cire se fait en forme de ruban dans les régions médianes et marginales des terga et dans les régions intertergales. Des sillons longitudinaux dans les rubans indiquent que les sécrétions des glandes disposées en ranger se fusionnent pour former des bandes de cire. La plupart des rubans de cire semblent être des extensions des sclérites tergaux. Chez le premier stade en diapause, les plagues de cire du post-notum sont bien visible tandis que chez l'adulte elles sont caractérisées par des petites fausses en forme de cratère. L'aspect chimique de la cire chez les espèces voisines et les possibilités de lutte à l'aide de substances juvénélisantes sont discutés.

Type
Articles
Copyright
Copyright © Entomological Society of Canada 1979

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References

Balch, R. E. 1952. Studies of the balsam woolly aphid, Adelges piceae (Ratz.), and the effects on balsam fir Abies balsamea (L.) Mill. Publ. Can. Dep. Agric. 867. 76 pp.Google Scholar
K. S., Brown Jr., 1975. The chemistry of aphids and scale insects. Chem. Soc. Rev. 4: 263288.Google Scholar
Bryant, D. G. 1975. Balsam woolly aphid, Adelges piceae (Ratz.), pp. 250254in Prebble, M. L., Aerial control of forest insects in Canada. Environment Canada, Ottawa.Google Scholar
Carroll, W. J. and Bryant, D. G.. 1960. A review of balsam woolly aphid in Newfoundland. For. Chron. 36: 278290.CrossRefGoogle Scholar
Davidson, A. G. 1967. Important forest insects and diseases of mutual concern to Canada, the United States and Mexico. Publ. Dep. Forestry and Rural Development 1180. Queen's Printer, Ottawa.Google Scholar
Filshie, B. K. 1970. The resistance of epicuticular components of an insect to extraction with lipid solvents. Tissue & Cell 2: 181190.CrossRefGoogle ScholarPubMed
Forbes, R. S. Balsam woolly aphid, in Rose, A. H. and Lindquist, O. H., Insects of eastern spruces, fir, and hemlock. Publ. Dep. Environ. Can. Forestry Serv. (in press).Google Scholar
Gilbert, L. I. 1976. The juvenile hormones. Plenum Press, New York and London. 572 pp.CrossRefGoogle Scholar
Jackson, L. L. and Blomquist, C. J.. 1976. Insect waxes, pp. 201234in Kolattukudy, P. E., Chemistry and biochemistry of natural waxes. Elsevier, Amsterdam, Oxford, and New York.Google Scholar
Leclant, F. 1973. Aspect ecologique de la transmission de la sharka (plum pox) dans le sud-est de la France. Mise en evidence de nouvelles especes d'aphides vectrices. Ann. Phytopath. 5: 431439.Google Scholar
Meinwald, J., Smolanoff, J., Chibnall, A. C., and Eisner, T.. 1975. Characterization and synthesis of waxes from homopterous insects. J. Chem. Ecol. 1: 269274.CrossRefGoogle Scholar
Mitchell, R. G., Johnson, N. E., and Rudinsky, J. B.. 1961. Seasonal history of the balsam woolly aphid in the Pacific Northwest. Can. Ent. 93: 794798.CrossRefGoogle Scholar
Mitchell, R. F. and Wright, K. H.. 1967. Foreign predator introductions for control of the balsam woolly aphid in the Pacific Northwest. J. econ. Ent. 60: 140147.CrossRefGoogle Scholar
Slama, K., Romanuk, M., and Sorm, F.. 1974. Insect hormones and bioanalogues. Springer-Verlag, New York.CrossRefGoogle Scholar
Staal, C. G., Nassar, S., and Martin, J. W.. 1973. Control of the citrus mealy bug (Planstoccus cirri: Hem., Hom., Psudeococcidae) with insect growth regulators with juvenile hormone activity. J. econ. Ent. 66: 851854.CrossRefGoogle Scholar
Tunnock, A. and Rudinsky, J. A.. 1959. Observations on the life-cycle of the balsam woolly aphid, Adelges piceae (Ratz.), in the Willamette Valley of Oregon. Can. Ent. 91: 208212.CrossRefGoogle Scholar