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Genetic diversity test of re-established population of Allium angulosum L.

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The genetic diversity of re-established population of endangered species Allium angulosum L. was tested as a one part of rescue program. Founder individuals were picked in Chropyně - Zářiči area (North Moravia, Czech Republic) and new population was set in Protected Landscape Area Litovelské Pomoravi (North Moravia, Czech Republic). The task was whether the newly founded population was made by representative individuals to cover (include) the genetic variability of source (mother) population. Items were tested with variability assay of six isozyme systems (G-6-PDH, AAT, PGM, EST, ACP, PGI) using discontinuous polyacrylamide gel electrophoresis (PAGE). The method stated relatively sufficient level of variability on condition that new population would be raised to prevent genetic changes. Application of more tests checking the genetic diversity within population could be uself during reintroduction and management of endangered plant species.
Słowa kluczowe
Rocznik
Strony
45--51
Opis fizyczny
Bibliogr. 25 poz., rys., tab.
Twórcy
autor
  • Palacky University Olomouc, Faculty of Natural Sciences, Department of Ecology and Environmental Sciences, Třida Svobody 26, Olomouc 77146, Czech Republic
autor
  • University of South Bohemia České Budějovice, Faculty of Agriculture, Studentská 13, České Budějovice 370 05, Czech Republic
Bibliografia
  • [1] Acquaah G. 1992 - Practical protein electrophoresis for genetic research - Dioscorides Press, Portland, 120 pp.
  • [2] Barrett S. C. H., Kohhn J. R. 1991 - Genetic end evolutionary consequences of small population size in plants: implication for conservation (In: Genetics and conservation of rare plants, Eds D. A. Falk, K. E. Holsinger) - Oxford University press. New York. pp. 3-30.
  • [3] Bureš, S., I. Machar 1999 - Litovelské Pomoravi. Správa chráněných krajinných oblasti ČR - CHKO Litovelské, Olomouc, 135 pp. (in Czech).
  • [4] Cruzan M. B. 1998 - Genetic markers in plant evolutionary ecology - Ecology, 79 (2): 400-412.
  • [5] Čelakovský L. 1867 - Prodromus der Flora von Böhmen enthalded die wildwachsenden und allgemein kultivirten gefässpflanzen des königreiches - Prague, 955 pp.
  • [6] Domin K., Podpěra J. 1928 - Klič k úplné květeně republiky Československé - Olomouc, 1088 pp. (in Czech).
  • [7] Dostál J. 1989 - Nová květena ČSSR 1, 2 - Academia, Praha, 1548 pp. (in Czech).
  • [8] Formánek E. 1887 - Květena Moravy a rakouského Slezska - Brno (in Czech).
  • [9] Frankham R. 1996 - Relationship of genetic variation to population size in wildlife – Conservation Biology, 10 (6): 1500-1508.
  • [10] Hamrick J. L. 1989 - Isozyme and the analysis of genetic structure in plant population — (In: Isozymes in plant biology, Eds D. E. Soltis, P. S. Soltis) - Dioscorides Press, Portland, Oregon, pp. 87-105.
  • [11] Hamrick J. L., Godt M. J. W. 1989 - Allozyme diversity in plant species (In: Plant population genetics, breeding and genetic resources, Eds A. H. D Brown, M. T. Clegg, A. L. Kahler, B. S. Weir) - Sinauer, Sunderland. Massachusetts, pp. 43-46.
  • [12] Hamrick B. D., Rickwood D. 1990 - Gel electrophoresis of proteins - Oxford University Press, England, 311 pp.
  • [13] Májovský J., Murin A. 1987 – Karyotaxonomický prehl’ad flóry Slovenska - Bratislava, 458 pp. (in Slovak).
  • [14] Mayo O. 1990 - Plant quantitative genetics (In: Plant population genetics, breeding and genetic resources, Eds A. H. D Brown, M. T. Clegg, A. L. Kahler, B. S. Weir) - Sinauer Associaates Inc., Massachusetts, pp. 351-366.
  • [15] Menges E. S. 1991 - The application of minimum viable population theory to plants (In: Genetics and conservation of rare plants, Eds. D. A. Falk, K. E. Holsinger) - Oxford university press. New York, pp. 45-61.
  • [16] Měsiček J., Jarolimová V. 1992 - List of chromosome numbers of the Czech vascular plants - Academia, Praha.
  • [17] Moravec J. 1995 - Rostlinná společenstva České republiky a jejich ohroženi. OVM Litoměřice, 206 pp. (in Czech).
  • [18] Parker P. G., Snow A. A., Shug M. D., Booton G. C., Fuers P. A. 1998 - What molecules can tell us about populations: choosing and using a molecular marker - Ecology, 79 (2): 361-382.
  • [19] Pazourková Z., Pazourek J. 1960 - Rychlé metody botanické mikrotechniky - Praha, 175 pp. (in Czech).
  • [20] Polivka F. 1902 - Názorná květena zemi koruny české. Svazek IV - Olomouc, 712 pp. (in Czech).
  • [21] Sipes S. D., Wolf P. G 1997 - Clonal structure and patterns of allozyme diversity in the rare endemic Cycladenia humilis var. Jonesii (Apocynaceae) - American Journal of Botany, 84 (3): 401-409.
  • [22] Šnábel V. 1995 - On some problems of electrophoretic methods used in isoenzyme analysis - Helmintologia, 32: 29-31.
  • [23] Templeton A. R. 1996 - Biodiversity at the molecular genetic level: experiences from disparate macroorganisms (In: Biodiversity measurement and estimation, Ed. D. L. Hawksworth) – Chapman and Hall, London, pp. 59-64.
  • [24] Vallejos E. 1983 - Enzyme activity staining (In: Isozyme in plant genetic and breeding, Eds S. D. Tanksley, T. J. Orton) - Elsevier Science Publishers B. V. pp. 469-516.
  • [25] Wendel L. F. 1989 - Visualization and interpretation of plant isozymes (In: Isozymes in plant biology, Eds E. D Soltis, P. S. Soltis) - Dioscorides Press, Portland, Oregon, pp. 5-45.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-0638-2852
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