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Electrophoretic studies on enzymes of diploid and triploid paragonimus westermani

Published online by Cambridge University Press:  06 April 2009

Takeshi Agatsuma
Affiliation:
Department of Parasitology, Kochi Medical School, Oko-cho Nankoku 781–51, Japan
Shigehisa Habe
Affiliation:
Department of Parasitology, School of Medicine, Fukuoka University, Fukuoka 814–01, Japan

Summary

An enzyme analysis of diploid and triploid Paragonimus westermani was conducted using starch gel electrophoresis. In total, 16 enzymes, probably encoded by 18 loci, were studied for 3 populations of the diploid form sampled from 2 localities, and 4 populations of the triploid form from 4 localities. Comparison of the enzymes of the triploid and the diploid digeneans showed 5 different patterns; diaphorase (EC 1.6.2.2), glutamic-oxaloacetic transaminase (EC 2.6.1.1), hexokinase (EC 2.7.1.1), leucylglycylglycine aminopeptidase (EC 3.4.1.3), and phosphoglucomutase (EC 2.7.5.1). On the basis of the numbers of bands and their patterns, all individuals of the triploid are probably heterozygous at each of these 5 loci and homozygous at the remaining 13 loci. The occurrence of fixed heterozygotes found in triploid populations cannot be easily explained by only a single mutation. It is suggested that the variability may have been introduced by hybridization with a different sub-species or a closely related species and may, thus, have been maintained since the time of the origin of triploids.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1985

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References

REFERENCES

Agatsuma, T. & Suzuki, N. (1981). Electrophoretic studies on enzymes in Paragonimus spp. I. Comparison of isozyme patterns between P. ohirai and P. miyazakii. Japanese Journal of Parasitology 30, 3743.Google Scholar
Chance, M. L. & Walton, B. C. (1982). Biochemical Characterization of Leishmania. Proceedings of a Workshop held at the Pan American Health Organization, Washington, D.C.: UNDP/WORLD BANK/WHO.Google Scholar
Fletcher, M. & Loverde, P. T. (1981). Schistosoma mansoni: Electrophoretic characterization of strains selected for different levels of infectivity to snails. Experimental Parasitology 52, 362–70.Google Scholar
Fletcher, M., Loverde, P. T. & Woodruff, D. S. (1981). Genetic variation in Schistosoma mansoni: Enzyme polymorphisms in populations from Africa, Southwest Asia, South America and the Caribbean. The American Journal of Tropical Medicine and Hygiene 30, 406–21.CrossRefGoogle Scholar
Habe, S. & Miyazaki, I. (1982). On the occurrence of the bisexual type of Paragonimus westermani (Kerbert, 1878) found in Innaimachi, Oita Prefecture, Japan. Japanese Journal of Parasitology 31, 275–80. (In Japanese with English summary.)Google Scholar
Habe, S. & Terasaki, K. (1982). On the type of Paragonimus westermani from crab hosts in Yaku Island, Kagoshima Prefecture. Japanese Journal of Parasitology 31, 2732. (In Japanese with English Summary.)Google Scholar
Lewontin, R. C. (1974). The Genetic Basis of Evolutionary Change. New York and London: Columbia University Press.Google Scholar
Markert, C. L. (1975). Isozymes IV. Genetics and Evolution. New York: Academic Press.Google Scholar
Miles, M. A., Toye, P. J., Oswald, S. C. & Godfrey, D. G. (1977). The identification by isozyme Patterns of two distinct strain-groups of Trypanosoma cruzi circulating independently in a rural area Of Brazil. Transactions of the Royal Society of Tropical Medicine and Hygiene 74, 326–32.Google Scholar
Miyazaki, I. (1978). Two types of the lung fluke which has been called Paragonimus westermani (Kerbert, 1878). Medical Bulletin of Fukuoka University 5, 251–63.Google Scholar
Mukai, T. & Voelker, R. A. (1977). The genetic structure of natural populations of Drosophila melanogaster XIII. Further studies on linkage disequilibrium. Genetics 86, 175–85.CrossRefGoogle ScholarPubMed
Neaves, W. B. & Gerald, P. S. (1968). Lactate dehydrogenase isozymes in parthenogenetic teilid Lizards (Chemidophorus). Science 160, 1004–5.CrossRefGoogle Scholar
Neaves, W. B. & Gerald, P. S. (1969). Gene dosage at the lactate dehydrogenase b locus in triploid And diploid teiid lizards. Science 164, 557–8.CrossRefGoogle ScholarPubMed
Nevo, E. (1978). Genetic variation in natural populations: Patterns and Theory. Theoretical Population Biology 13, 121–77.Google Scholar
Selander, R. K., Smith, M. H., Yang, S. Y., Johnson, W. E. & Gentry, J. B. (1971). Biochemical Polymorphism and systematics in the genus Peromyscus. I. Variation in the old-field mouse (Peromyscus polionotus). University of Texas Studies in Genetics 6, 4990.Google Scholar
Shaw, C. R. & Prasad, R. (1970). Starch gel electrophoresis of enzymes – A compilation of recipes. Biochemical Genetics 4, 297320.Google Scholar
Sugiyama, H., Okuda, M., Sonoda, M., Tomimura, T. & Nishida, H. (1983). Observations on the incidence in Geothelphusa dehaani in Iga area of Mie Prefecture. Japanese Journal of Parasitology 32 (Suppl.), 52. (In Japanese.)Google Scholar
Taylor, A. E. R. & Müller, R. (1979). Problems in the Identification of Parasites and their vectors. Oxford: Blackwell Scientific Publications.Google Scholar
Terasaki, K. (1977). Studies on chromosome of the lung flukes in Japan. Japanese Journal of Parasitology 26, 222–9.Google Scholar
Terasaki, K. (1980 a). Comparative studies on the karyotypes of Paragonimus westermani (s.str.) and P. Pulmonalis. Japanese Journal of Parasitology 29, 239–43.Google Scholar
Terasaki, K. (1980 b). The karyotype and spermiogenesis of Paragonimus pulmonalis (Baelz, 1880) Collected in Tsushima. Medical Bulletin of Fukuoka University 7, 2731.Google Scholar
Vrijenhoek, R. C. (1978). Genetic differentiation among larval nematodes infecting fishes. Journal Of Parasitology 64, 790–8.CrossRefGoogle Scholar
Yokogawa, M. (1982). Newly introduced questions concerning Paragonimus westermani. Journal of the Formosan Medical Association 81, 774–80.Google ScholarPubMed