TEMPORAL VARIABILITY THE GENETIC CHARACTERISTICS IN BROUN TROUT (SALMO TRUTTA L.) FROM THE VOROB’EV RIVER (WHITE SEA) ON ALLOZYME
https://doi.org/10.1234/XXXX-XXXX-2011-4-13-16
Abstract
Analysis of allozyme variability in brown trout from Vorob’ev river was carry out. We studied 17 gene loci coding enzymes: glycerol-3-phosphate dehydrogenase (G3PDH ); aspartate aminotrans- ferase (AAT ); malate dehydrogenase (MDH ); lactate dehydrogenase (LDH ); superoxide dismutase (SOD ); esterase D (EST-D ). Significant differences between the sampes of brown trout catching in 1981—1982 and/or 1992—1995 were determined by loci: AAT-1,2*, G3PDH-2,3*, LDH-5*, MDH-2*. We should suppose that allele frequency changing by the time in brown trout from Vorob’ev river were bound up with genetic drift.
References
1. Ferguson A., Taggart J.B. Genetic differentiation among the sympatric brown trout (Salmo trutta) population of Lough Melvin, Ireland // Biol. J. Linnean Soc. 1991. Vol. 43. P. 221—237.
2. Махров А.А., Кузищин К.В., Новиков Г.Г. Генети¬ческая дифференциация кумжи (Salmo trutta L.) побе¬режья пролива Великая салма // Генетика. 1999. Т. 35. № 7. С. 969—975.
3. Grozier W.W., Ferguson A. Electrophoretic examination of the population structure of brown trout, Salmo trut- ta L., from the Lough Neagh catchment, Northern Ireland // J. Fish. Biol. 1986. Vol. 28. P. 459—477.
4. Jensen L.F., Hansen M.M., Carlsson J., Loeschcke V., Mensberg K.D. Spatial and temporal genetic differentiation and effective population size of brown trout (Salmo trutta L.) in small Danish rivers // Conserv. Genet. 2005. Vol. 6. N 4. P. 615—621.
5. Davis B.J. Disc-electrophoresis. Method and application to human serum proteins // Ann. N.-Y. Acad. Sci. 1964. Vol. 121. P. 404—427.
6. Peacock A.C., Bunting S.L., Quenn K.G. Serum protein electrophoresis in acrilamide gel: patterns from normal human subject // Science. 1965. Vol. 147. P. 1451—1452.
7. Allendorf F. W., Phelps S.R. Use of allelic frequencies to describe population structure // Can. J. Fish. Aquat. Sci. 1981. Vol. 38. P. 1507—1514.
8. Shaklee J.B, Allendorf F.W, Morizot D.C., Whitt G.S. Gene nomenclature for protein-coding loci in fish // Trans. Amer. Fish. Soc. 1990. Vol. 119. P. 2—15.
9. Waples R.S. Estimation of allele frequencies at isoloci // Genetics. 1988. Vol. 118. N 2. P. 371-384.
10. Осинов А.Г. Кумжа (Salmo trutta L., Salmonidae) бассейнов Черного и Каспийского морей: популяцион- но-генетический анализ // Генетика. 1988. Т. 24. № 12. С. 2172-2186.
11. Осинов А.Г, Берначе Л. "Атлантическая" и "дунайская" филогенетические группы кумжи Salmo trutta complex: генетическая дивергенция, эволюция, охрана // Вопр. ихтиологии. 1996. Т. 36. № 6. С. 762—786.
12. Животовский Л.А. Популяционная биометрия. М.: Наука, 1991. 283 с.
13. Zaykin D.V., Pudovkin A.I. Two programs of estimate Chi-square values using pseudo-probability test //J. Hered. 1993. Vol. 84. P. 152.
14. Новиков Г.Г., Семенова А.В., Строганов А.Н., Тагизаде В. Аллозимная изменчивость в популяциях кумжи Salmo trutta из Ирана // Вопр. ихтиологии. 2008. Т. 48. № 4. С. 421—426.
15. Jorde P.E., Ryman N. Demographic genetic of brown trout (Salmo trutta) and estimation of effective population size from temporal change of allele frequencies // Genetics, 1996. Vol. 143. N 3. P. 1369—1381.
16. Allendorf F.W., Utter F.M. Population genetics // Fish Physiol. 1979. Vol. 8. P. 407—454.
Review
For citations:
Semenova A.V., Ponomarev S.A. TEMPORAL VARIABILITY THE GENETIC CHARACTERISTICS IN BROUN TROUT (SALMO TRUTTA L.) FROM THE VOROB’EV RIVER (WHITE SEA) ON ALLOZYME. Vestnik Moskovskogo universiteta. Seriya 16. Biologiya. 2011;(4):13-16. (In Russ.) https://doi.org/10.1234/XXXX-XXXX-2011-4-13-16