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Tytuł artykułu

Analysis of ancient mitochondrial DNA of the Baltic Sea sturgeon (Acipenser sp.)

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Genetic relatedness between Baltic Sea sturgeon (Acipenser sturio L.) specimens caught in different geographic areas is not clear. According to previous studies, fish captured in different locations within the historic area of A. sturio habitation are genetically different to each other. We have examined a fragment (191 base pairs) of mitochondrial cytochrome b gene of four specimens of A. sturio found in Poland: three fish were preserved in museums of natural history and the bone of one fish was from an archaeological site. DNA sequences of the three museum samples were identical, whereas the DNA sequence of the archaeological sample differed in the 918 position of the cytochrome b gene. All the analyzed DNA fragments were similar to those of Acipenser baeri and genetically distant to Acipenser sturio and A. oxyrinchus.
Rocznik
Strony
29--33
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
  • Department of Ichthyology, Faculty of Environmental Sciences and Fisheries, University of Warmia and Mazury in Olsztyn, 10-718 Olsztyn, Oczapowskiego 5, Poland
  • Department of Environmental Biotechnology, Faculty of Environmental Sciences and Fisheries, University of Warmia and Mazury in Olsztyn, Słoneczna 45G, 10-709 Olsztyn, Poland
  • Department of Environmental Biotechnology, Faculty of Environmental Sciences and Fisheries, University of Warmia and Mazury in Olsztyn, Słoneczna 45G, 10-709 Olsztyn, Poland
Bibliografia
  • Altschul, S.F., W. Gish, W. Miller, E.W. Myers, D.J. Lipman. 1990. Basic local alignment search tool. Journal of Molecular Evolution 42: 459-468.
  • Birstein, V. J., J. Betts, R. DeSalle. 1998a. Molecular identification of Acipenser sturio specimens: a warning note for recovery plans. Biological Conservation 84: 97-101.
  • Birstein, V.J., P. Doukakis, B. Sorkin, R. DeSalle. 1998b. Population aggregation analysis of three caviar-producing species of sturgeons and implications for the species identification of black caviar. Conservation Biology 12: 766-775.
  • Birstein, V.J., P. Doukakis. 2000. Molecular analysis of Acipenser sturio L., 1758 and Acipenser oxyrinchus Mitchill, 1815: A review. Boletin Instituto Espańol de Oceanografia 16: 61-73.
  • Ciesielski, S. 2001. Examination of ancient DNA for inferring phylogenetic relationship among fishes. PhD thesis, University of Warmia and Mazury in Olsztyn, 84 p. (in Polish with English summary).
  • Ciesielski, S., P. Brzuzan, M. Luczynski. 2002. Recovery and analysis of mitochondrial DNA from ancient bones of common bream, Abramis brama L. Ancient Biomolecules 4: 43-46.
  • Felsenstein, J. 1995. PHYLIP (Phylogeny Inferrence Package, Version 3.57c. Department of Genetics, University of Washington, Seattle, WA, 1995).
  • Hagelberg, E., L.S. Bell, T. Allen, S.J. Jones, J.B. Clegg. 1991. Ancient bone DNA: techniques and applications. Philosophical Transactions of the Royal Society of London, Series B, Biological Sciences 333: 399-407.
  • Holčik, J. 2000. Major problems concerning the conservation and recovery of the Atlantic sturgeon Acipenser sturio L., 1758. Boletin Instituto Espańol de Oceanografia 16: 139-148.
  • Holčik, J., R. Kinzelbach, L.I. Sokolov, V.P Vasilev. 1989. Acipenser sturio Linnaeus, 1758. In: The Freshwater Fishes of Europe. General Introduction to Fishes. Acipenseriformes (ed. J. Holčik), pp. 367-394. AULA Verlag. Wiesbaden, Germany, 1 II.
  • IUCN. 2003. IUCN Red List of Threatened Animals. www.redlist.org
  • Kocher, T.D., W.K. Thomas, A. Meyer, S.V. Edwards, S.F. Pääbo, F.X. Villablanca, A.C. Wilson. 1989. Dynamics of mtDNA evolution in animals: Amplification and sequencing with conserved primers. Proceedings of the National Academy of Sciences of the United States of America 86: 6196-6200.
  • Kolman, R., Z. Zarkua. 2002. Environmental conditions of common sturgeon (Acipenser sturio L.) spawning in River Rioni (Georgia). Electronic Journal of Polish Agricultural Universities, Fisheries, 5, 2 (2002).
  • http://www.ejpau.media.pl/series/volume5/issue2/fisheries/art-01.html
  • Kulmatycki, W. 1933. On sturgeon conservation in Polish rivers. Ochrona Przyrody 12: 1-21 (in Polish).
  • Ludwig, A.N., I. Jenneckens, L. Debus, A. Ludwig, J. Becker, F. Kirschbaum. 2000. Genetic analyses of archival specimens of the Atlantic sturgeon Acipenser sturio L., 1758. Boletin Instituto Espańol de Oceanografia 16: 181-190.
  • Marti, V. Yu. 1939. The biology and harvest of Acipenser sturio in the Black Sea. Zoologicheskij Zhurnal 18: 435-442 (in Russian).
  • Ninua, N.Sh. 1976. Atlantic sturgeon in the Rioni River. Izdatelistvo Metsniereba, Tbilisi, Georgia 22 p. (in Russian).
  • Pääbo, S. 1989. Ancient DNA: extraction, characterization, molecular cloning, and enzymatic amplification. Proceedings of the National Academy of Sciences of the United States of America 86: 1939-1943.
  • Rudnicki, A. 1966. The sturgeon: protection, poaching. Gospodarka Rybna 1: 21-22 (in Polish).
  • Sych, R., R. Bartel, K. Bieniarz, J. Mastynski. 1996. Project of migratory fish restoration in Poland. MS, Inland Fisheries Institute in Olsztyn, Poland, 40 p. (in Polish).
  • Thompson, J. D., D.G. Higgins, T.J. Gibson. 1994. CLUSTAL W: Improving the sensitivity of progressive multiple sequence alignment through sequence weighting, positions-specific gap penalties and weight matrix choice. Nucleic Acids Research 22: 4673-4680.
  • Yang, Z. 1995. Phylogenetic analysis by maximum likelihood (PAML) (Version 1.0. Institute of Molecular Evolutionary Genetics, Pennsylvania State University, U.S.A.).
  • Zelichowska, J. 1964. The sturgeon in the Vistula River near Torun. Gospodarka Rybna 8: 6-7 (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAR0-0061-0083
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