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ADDITIONAL ISOZYME CHARACTERS THAT DIFFERENTIATE TWO CLOSELY RELATED SPECIES OF HYBOMITRA (DIPTERA: TABANIDAE)

Published online by Cambridge University Press:  31 May 2012

Anne Hudson
Affiliation:
Biosystematics Research Institute, Agriculture Canada, Ottawa K1A 0C6

Abstract

The isozyme phenotypes of five enzymes have been found to provide additional characters that distinguish two forms of Hybomitra typhus until recently considered as conspecific. Hexokinase and malate dehydrogenase phenotypes were completely diagnostic for the new species H. pechumani and for H. typhus. Alcohol dehydrogenase, triosephosphate isomerase, and phosphoglucomutase differentiated the two species in terms of their phenotype frequencies but were not completely diagnostic. The genotypic frequencies of triosephosphate isomerase were found to be diagnostic with a probability of 99.8%.

Type
Articles
Copyright
Copyright © Entomological Society of Canada 1979

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References

Anderson, W. W., Ayala, F. J., and Michod, R. E.. 1977. Chromosomal and allozymic diagnosis of three species of Drosophila. J. Heredity 68: 7174.CrossRefGoogle ScholarPubMed
Ayala, F. J. and Powell, J. R.. 1972. Allozymes as diagnostic characters of sibling species of Drosophila. Proc. natn. Acad. Sci. U.S.A. 69: 10941096.Google Scholar
Ayala, F. J., Tracey, M. L., Mourao, C. A., and Salas, S. Pérez. 1972. Enzyme variability in the Drosophila willistoni group. IV. Genic variation in natural populations of Drosophila willistoni. Genetics 70: 113139.CrossRefGoogle ScholarPubMed
Bullini, L., Gironi, A. M., Bullini, A. P. Bianchi, and Coluzzi, M.. 1972. Phosphoglucomutase gene in Aedes aegypti: a fourth allele and preliminary linkage data. Biochem. Genetics 7(1); 4144.Google Scholar
Hudson, A. and Teskey, H. J.. 1976. Morphological and biochemical characteristics of two forms of Hybomitra typhus (Diptera: Tabanidae). Can. Ent. 108: 737740.Google Scholar
McDonald, I. C., Nelson, D. R., Johnson, O. A., Filipi, P. A., and Cardwell, D. L.. 1978. Housefly genetics: Inheritance patterns of phosphoglucomutase, hexokinase, and glutamate-oxalacetate transaminase isozymes. Ann. ent. Soc. Am. 71: 99102.CrossRefGoogle Scholar
Pechuman, L. L., Teskey, H. J., and Davies, D. M.. 1961. The Tabanidae of Ontario. Proc. ent. Soc. Ont. 91: 77121.Google Scholar
Teskey, H. J. and Thomas, A. W.. 1979. Identity of Hybomitra typhus and description of a new species previously confused with it (Diptera: Tabanidae). Can. Ent. 111: 343350.CrossRefGoogle Scholar