Warianty tytułu
Języki publikacji
Abstrakty
Genomic DNA from 14 representative animals of 3 maternal lines of Bison bonasus (Linnaeus, 1758) was used for amplification of a 1026-bp fragment of mtDNA D-loop. Analysis of this mitochondria! control region demonstrated only four variable sites in the studied B. bonasus population. Nucleotide substitutions in the fragment studied were very unstable, suggesting that intralineage sequence variation can occur in B. bonasus. To estimate phylogenetic relationships within the Bouinae subfamily mtDNA control region was analysed. The phylogenetic analysis separated two species of Bison, and placed Bison bison most closely to Bos grunniens. The rate sequence divergence of the hypervariable region of the D-loop between B. bonasus and B. bison was calculated as 78.5% per Myr.
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Twórcy
autor
- Polish Academy of Sciences, 02-106 Warsaw, Pawinskiego 5a, Poland
autor
autor
Bibliografia
- Anderson S., de Bruijn M. H. L., Couison A. R., Eperon I. C., Sanger F. and Young I. G. 1982. Complete sequence of bovine mitochondrial DNA: Conserved features of the mammalian mitochondrial genome. Journal of Molecular Biology 156: 683-717.
- Bradley D. G., MacHugh D. E., Cunninghan P. and Loftus R, T. 1996. Mitochondrial diversity and the origins of African and European cattle. Proceedings of the National Academy of Sciences of the USA 93: 5131-5135.
- Brown W. M., George M. and Wilson A. C. 1979. Rapid evolution of animal mitochondrial DNA. Proceedings of the National Academy of Sciences of the USA 76: 1967-1971.
- Burzyńska B. and Topczewski J. 1995. Genotyping of Bison bonasus K-casein gene following DNA sequence amplification. Animal Genetics 26: 335-336.
- Cronin M. A. and Cockett N. 1993. Kappa-casein polymorphism among cattle breeds and bison herds. Animal Genetics 24: 135-138.
- Groves C. P. 1981. Systematic relationships in the Bovini (Artiodactyla, Bovidae). Zeitschrift fiir Zoologische Systematic und Evolutionsforschung 19: 264-278.
- Higgins D. G. and Sharp P. M. 1989. Fast and sensitive multiple sequences aligments on microcomputers. Compute Applied Biosciences 5: 151-153.
- Ishiba N., Oyunsuren T., Mashima S., Mukoyama H. and Saitou N. 1995. Mitochondrial DNA sequences of various species of the genus Equus with special reference to the phylogenic relationship between Przewalski's Wild Horses and domestic horses. Journal of Molecular Evolution 41: 180-188.
- Janecek L, L., Honeycutt R. L., Adkins R. M. and Davis S. K. 1995. Mitochondrial gene sequences and the molecular systematics of the Ariodactyl Subfamily Bovinae. Molecular Phylogenetics and Evolution 6: 107-119.
- Kocher T. D., Thomas W. K., Meyer A., Edwards S. V., Paabo S., Villablanca F. X. and Wilson A. C. 1989. Dynamics of mitochondrial DNA evolution in animals: Amplification and sequencing with conserved primers. Proceedings of the National Academy of Sciences of the USA 86: 6196-6200.
- Koehler C. M., Lindberg G. L„ Brown D. R„ Beitz D. C„ Freeman A. E., Mayfield J. F. and Myers A. M. 1991. Replacement of bovine mitochondrial DNA by sequence variant within one generation, Genetics 129: 247-255.
- Laipis P J., Van de Walie M. J. and Hauswirth W. W. 1988. Unequal partitioning of bovine mitochondrial genotypes among siblings. Proceedings of the National Academy of Sciences of the USA 85: 8107-8110.
- Loftus R T., MacHough D., Bradley D. G., Sharp P. M. and Cunningham P. 1994. Evidence for two independent domestications of cattle. Proceedings of the National Academy of Sciences of the USA 91: 2757-2761.
- MacHugh D. E., Shriver M. D., Loftus R. T., Cunningham P. and Bradley D. G. 1997. Microsatellite DNA variation and the evolution, domestication and phylogeography of taurine and zebu cattle (Bos taurus and Bos indicus). Genetics 146: 1071-1086.
- Madisen L„ Hoar D. I., Holroyd M., Crisp M. and Hodes M. E. 1987. DNA banking: the effect of storage of blood and isolated DNA on the integrity of DNA, American Journal of Medical Genetics 27: 379-390,
- Marklund S., Chaudhary R., Marklund L., Sandberg K. and Andersson L. 1995. Extensive mtDNA diversity in horses revealated hy PCR-SSCP analysis. Animal Genetics 26: 193-196.
- Morris B. G., Spencer M. C., Stabile S. and Dodd J. N. 1994. Restriction fragment length polymorphic RFLP of exon 2 of the MhcBibi-DRB3 gene in American bison B. bison. Animal Genetics 25: 91-93.
- Olech W. 1989. The participation of ancestral genes in the existing population of European bison. Acta Theriologica 34: 397-407.
- Payen E. J. and Cotinot C. Y, 1994. Sequence evolution of SRY gene within Bovidae family. Mammalian Genome 5: 723-725.
- Ron M., Yoffe O. and Weller J. J. 1993. Sequence variation in D-loop mtDNA of cow lineages for high and low maternal effects on milk production. Animal Genetics 24: 183-186.
- Saitou N. and Nei M. 1987. The neighbor-joining method: a new method for reconstructing phylo- genetic trees. Molecular Biology and Evotution 4: 406-425.
- Ward T. J., Honeycutt R. L. and Derr J. N. 1997. Nucleotide sequences evolution at the K-casein locus: evidence for positive selection within the family Bovidae. Genetics 147: 1863-1872.
- Wilkinson G. S. and Chapman A. M. 1991. Length and sequence variation in evening bat D-loop mtDNA. Genetics 128: 607-617.
Typ dokumentu
Bibliografia
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Identyfikator YADDA
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