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SHORT- AND LONG-TERM EFFECTS OF FOREST SPRAYING OF CARBARYL (SEVIN-4-OIL®) ON STREAM INVERTEBRATES1

Published online by Cambridge University Press:  31 May 2012

David L. Courtemanch
Affiliation:
Department of Entomology, University of Maine at Orono 04469
K. Elizabeth Gibbs
Affiliation:
Department of Entomology, University of Maine at Orono 04469

Abstract

The effect on stream invertebrates of carbaryl (Sevin-4-oil®) applied at a rate of 840 g A.I./ha for spruce budworm suppression in Maine was studied. Three streams in each of three different treatment areas were monitored: streams in areas sprayed with carbaryl for the first time, streams in areas sprayed 2 consecutive years, and streams in unsprayed areas.

Initial postspray response was an increase in drift up to 170× in treated streams. Benthos samples showed significant declines among Plecoptera, Ephemeroptera, and Trichoptera on subsequent sampling dates. Plecoptera did not repopulate any treated stream by 60 days after treatment. Streams treated for the second consecutive year had very low prespray Plecoptera populations compared with those unexposed to carbaryl. Diptera, with the exception of Microtendipes, and Oligochaeta were unaffected.

Type
Articles
Copyright
Copyright © Entomological Society of Canada 1980

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References

Aly, O. M. and El-Dib, M. A.. 1972. Studies of the persistence of some carbamate insecticides in the aquatic environment. pp. 211–243 in Fate of organic pesticides in the aquatic environment; a symposium sponsored by the Division of Pesticide Chemistry, Los Angeles, CA, March 29–31, 1971. American Chemical Society, Washington, DC. 280 pp.Google Scholar
Burdick, G. E., Dean, H. J., and Harris, E. J.. 1960. The effect of Sevin upon the aquatic environment. N.Y. Fish and Game J. 7: 1425.Google Scholar
Coutant, C. C. 1964. Insecticide Sevin: Effect of aerial spraying on drift of stream insects. Science 146: 420421.CrossRefGoogle ScholarPubMed
Elliott, J. M. 1971. Some methods for the statistical analysis of samples of benthic invertebrates. Freshwater Biol. Ass. U.K. Sci. Publ. 25. 144 pp.Google Scholar
Hulbert, P. J. 1978. Mattawamkeag River Studies: II. Effects of Sevin insecticide on fish and invertebrates in 1976. Migratory Fish Res. Inst. Univ. of Maine, Orono. 98 pp.Google Scholar
LOTEL. 1977. The environmental impact of Sevin-4-oil® (carbaryl) on a forest and aquatic ecosystem. Lake Ont. environ. Lab. (Oswego, N.Y.) Rep. 215. 128 pp.Google Scholar
Pimentel, D. 1971. Ecological effects of pesticides on non-target species. Executive Office of the President, Office of Science and Technology. U.S. Govt. Printing Office, Washington, D.C.220 pp.Google Scholar
Sanders, H. O. and Cope, O. B.. 1968. The relative toxicities of several pesticides to naiads of three species of stoneflies. Limnol. Oceanogr. 13: 112117.CrossRefGoogle Scholar
Schoettger, R. A. and Mauck, W. L.. 1976. Toxicities of experimental forest insecticides to fish and aquatic invertebrates. Fish-Pesticide Res. Lab., U.S. Fish and Wildlife Service, Columbia, MO. 22 pp.Google Scholar