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Natural selection for enzyme variants among parthenogenetic Daphnia magna

Published online by Cambridge University Press:  14 April 2009

P. D. N. Hebert
Affiliation:
Department of Genetics, University of Cambridge, Milton Road, Cambridge CB4 1XH
R. D. Ward
Affiliation:
Department of Genetics, University of Cambridge, Milton Road, Cambridge CB4 1XH
J. B. Gibson
Affiliation:
Department of Genetics, University of Cambridge, Milton Road, Cambridge CB4 1XH
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Summary

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The frequencies of genetically determined electrophoretic variants of two enzyme systems in the parthenogenetic crustacean D. magna have been followed in two isolated populations. In both populations a marked excess of hetero-zygotes was found in the later samples. It is concluded that the observed changes in gene and genotypic frequencies are due to natural selection as both migration and genetic drift can be excluded.

Type
Short Papers
Copyright
Copyright © Cambridge University Press 1972

References

REFERENCES

Berg, K. (1931). Studies on the Genus Daphnia. Copenhagen: Bianco Luno, A/S.Google Scholar
Lewontin, R. C. (1967). Population genetics. Annual Review of Genetics 1, 3770.CrossRefGoogle Scholar
Margalef, R. (1963). On certain unifying principles in ecology. The American Naturalist 97, 357–74.CrossRefGoogle Scholar
Mortimer, C. H. (1936). Experimentelle und cytologische Untersuchungen über den Generationswechsel der Cladoceran. Zoologische Jarbücher 56, 323388.Google Scholar
Ojima, Y. (1958). A cytological study on the development and maturation of the partheno-genetic and sexual eggs of the Daphnia pulex. Kwansei Gakuin University Annual Studies 6, 123176.Google Scholar
White, M. J. D. (1970). Heterozygosity and genetic polymorphism in pathenogenetic animals. Evolution and Genetics, ed. Hecht, M. K. and Steere, W. C.. North Holland: Amsterdam.Google Scholar