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Morphological and biochemical variation among common reed (Phragmites australis) populations in northwest Poland

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Plant material from 42 common reed populations originating from various lakes and ponds in northwest Poland were investigated with respect to eight panicle traits and three peroxidase loci that were detected with electrophoresis. Genetic differences between populations were estimated based on allozyme frequencies. Electrophoretic data indicated that some populations contain an excess of heterozygotes, pointing to extensive gene flow, which is typical of panmictic, openpollinated populations.
Rocznik
Strony
29--38
Opis fizyczny
bibliogr. 24 poz., tab., wykr.
Twórcy
autor
  • Department of Ecology and Environmental Protection University of Life Sciences in Poznań ul. Piątkowska 94, 61-691 Poznań, Poland, mariadra@au.poznan.pl
Bibliografia
  • Amsberry L., Baker M.A., Ewanchuk P.J. and Bertness M.D., 2000, Clonal integration and the expansion of Phragmites australis, Ecological Application, 10(4): 1110-1118
  • Armstrong J., Armstrong W., Zenbin Wu, Afreen-Zobayden F., 1996, A role for phytotoxins in the Phragmites die-back syndrome?, Folia Geobot. Phytotax., 31:127-142
  • Avdulov N.P., 1931, Karyosystematische Untersuchungen der Familie Gramineen, Buil. Appl. Bot. Genet. and Plant Breeding., Suppl. 43: 1-438
  • Björk S., 1967, Ecologic investigations of Phragmites communis. Studies in theoretic and applied limnology, Folia Limnol. Scand., 14:1-248
  • Čižková H., Brix H., 1999, International Conference on Phragmites - dominated wetlands, their functions and sustainable use, April 18-23, 1999, Trebon, Czech Republic, (Abstr.)
  • Clevering O.A., 1999, The effects of litter on growth and plasticity of Phragmites australis clones originating from infertile, fertile or eutrophicated habitats, Aquatic Botany, 64: 35-50
  • Güsewell S., 1998, Does mowing in summer reduce the abundance of common reed (Phragmites australis)?, Bull. Geobot. Inst. ETH, 64:23-35
  • Kahler A.L., Allard, R. W., Krzakowa, M., Werhahn, C. F., Nevo, E., 1980, Associations between isozyme phenotypes and environment in the slender wild oat (Avena barbata) in Israel, Theor. Appl. Genet., 56: 31-47
  • Kozłowski S., 1992, Ekologia i wartość wskaźnikowa zbiorowisk roślinności szuwarowej naturalnych zbiorników stojących, Fragm. Flor. Geobot., 37 (2): 563 - 595
  • Krzakowa M., 1996, Genetic diversity of Phragmites australis (Cav.) Trin. ex Steud. revealed by electrophoretically detected differences in peroxidases, [in]: Plant Peroxidases: Biochemistry and Physiology, Obinger, C., Burner, U., Ebermann, R., Penel, C., Greppin, H., (eds.), University of Geneva, pp,184-189
  • Krzakowa M., Drapikowska M., 2000, Sexual reproduction of Phragmites australis (Poaceae) in Baczkowski pond (Poznań, Poland) revealed by peroxidase polymorphism, Biological Bulletin of Poznań, 37(1): 43-53
  • Krzakowa M., Jańczak-Węglarska J., Śliwińska E., 2003(a), Peroxidase polymorphism in Calamagrostis epigejos (Poaceae) indicating interspecific hybridisation, [in]: Application of Novel Cytogenetic and Molecular Techniques in Genetics and Breeding of Grasses, Z. Zwierzykowski, M. Surma and P. Kachlicki (eds.), Institute of Plant Genetics PAS, Poznań, Poland, 109-114
  • Krzakowa M., Kołodziejczak, M., Drapikowska, M., Jakubiak, H., 2003(b), The Variability of Reed Phragmites australis (Poaceae) populations expressed in morphological traits of panicles. Acta Soc. Bot. Pol., 72(2): 157-160
  • Krzakowa M., Kraupe A., 1981, Isozyme investigations of natural populations of cheatgrass (Bromus tectorum L.), Bot. Jahrb. Syst., 102: 1-4
  • Krzakowa M., Mikulski W., 1997, Peroxidase as a marker in pure lines identity of perennial ryegrass (Lolium perenne L.). Eucarpia' 96. Fodder Crops and Amenity Grasses Section. 20th Meeting, Radzików Poland, 322-326
  • Krzakowa M., Michalak M., Judek M., 2006, Genetic differences among four endangered and protected in Poland Stipa species: S. borysthenica, S. capillata, S. joannis and S. pulcherrima, Biodiversity: Research and Conservation, 1-2: 45-49
  • Nei M., 1973, Analysis of gene diversity in subdivided populations, Proc. Nat. Acad. Sci. USA, 70: 3321-3323
  • Pellegrin D., Hauber D.P., 1999, Isozyme variation among populations of the clonal species, Phragmites australis (Cav.) Trin. ex Stteuede, Aquatic Botany, 63: 241-259
  • Rea N., 1996, Water levels and Phragmites: decline from lack of regeneration or dieback from shoot death, Folia Geobot. Phytotax., 31:85-90
  • Raicu P., Staicu S., Stoian V., Roman T., 1972, The Phragmites communis Trin. Chromosome complement in the Danube Delta, Hydrobiology., 39: 83-89
  • Rodevald-Rudescu L., 1974, Das Schilflohr Phragmites communis Trinus, Schweizerbart'sche Verlagsbuchhandlung, 229-292
  • Scandalios J.G., 1969, Genetic control of multiple forms of enzymes: a compilation of recipes. Biochem. Genet., 4:297-320
  • Stanton L.E., Mendelsson J.A., 1999, Phragmites australis population expansion in south western Luisiana, [in]: Čižková H., Brix H., (eds.), International conference on Phragmitesdominated wetlands, their function and sustainable use, April 18-23, Trebon, Czech Republic, 95, (Abstr.)
  • Wysocki A., Krzakowa M., Michalak M., 2006, European needlegrass (Stipa capillata L.) population found in the New Zoological Garden in Poznań, characterised by electrophoretically detected peroxidase and esterase variability, Biodiversity: Research and Conservation, 3-4: 248-250
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0016-0053
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