PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2008 | 49 | 3 |

Tytuł artykułu

Genetic diversity of ornamental Allium species and cultivars assessed with isozymes

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The aim of the study was to verify the similarity of 13 species and 5 cultivars of ornamental alliums and classify them into groups based on morphological and isozyme variation. The work embraced: Allium aflatunense, A. caeruleum, A. christophii, A. giganteum, A. karataviense, A. moly, A. nigrum, A. pyrenaicum, A. rosenbachianum, A. schubertii, A. siculum (syn. Nectaroscordum siculum), A. sphaerocephalon, A. striclum, A. stipitatum 'Album', A. 'Ivory Queen', A. 'Lucy Ball', A. 'Mont Blanc', and A. 'Purple Sensation'. Scape length, inflorescence diameter, and flowering period were recorded. Isozyme marker polymorphism was assessed by starch gel electrophoresis. Eight polymorphic isozyme systems (AAT, GPI, PGM, ALAT, ACP, DIAP, ALDO, PGD) were selected from 16 analysed in the taxa. Besides the differences between the taxa, the isozymes revealed intraspecific polymorphism in 5 systems. A total of 37 markers were obtained and used for dendrogram construction. The most similar taxa were A. karataviense with A. 'Ivory Queen', and A. karataviense with A. christophii (similarity level 0.78). A high similarity of 11 taxa belonging to one group (A. aflatunense, A. christophii, A. giganteum, A. karataviense, A. nigrum, A. schubertii, A. 'Ivory Queen', A. 'Lucy Ball', A. stipitatum 'Album', A. 'Mont Blanc', A. 'Purple Sensation') suggested that this group could be identified with the subgenus Melanocrommyum.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

49

Numer

3

Opis fizyczny

p.213-220,fig.,ref.

Twórcy

autor
  • Department of Ornamental Plants, University of Life Sciences, Dabrowskiego 159, 60-594 Poznan, Poland
autor
  • Institute of Plant Genetics, Polish Academy of Sciences, Poznań, Poland
autor
  • Institute of Plant Genetics, Polish Academy of Sciences, Poznań, Poland
  • Department of Mathematical and Statistical Methods, University of Life Sciences, Poznań, Poland

Bibliografia

  • Cardy B, Stuber C, Goodman M, 1980. Techniques for starch gel electrophoresis of enzymes from maize (Zea mays L.). Dept. of Statistics Mimco, Series No. 137. Rayleigh: North Carolina State Univ.
  • Clayton J, Tretiak D, 1972. Amine-citrate buffers for pH control in starch gel electrophoresis. J Fish Res Board Can 29: 1169-1172.
  • Crawford D, 1983. Phylogenetic and systematic inferences from electrophoretic studies. In: Tanksley S, Orton T, eds. Isozymes in plant genetics and breeding. Part A. Amsterdam: Elsevier Science Publishers: 257-287.
  • Davies D, 1992. Alliums-the ornamental onions. London: B.T. Batsford.
  • Dubouzet JG, Shinoda K, 1999. Relationships among Old and New World alliums according to ITS DNA sequence analysis. Theor Appl Genet 98: 422-433.
  • Dubouzet J, Shinoda K, Murata N, 1997. Phylogeny of Allium L. subgenus Rhizirideum (G. Don ex Koch) Wendelbo according to dot blot hybridization with randomly amplified DNA probes. Theor Appl Genet 95: 1223-1228.
  • Friesen N, Fritsch R, Bachmann K, 1997. Hybrid origin of some ornamentals of Allium subgenus Melanocrommyum verified with GISH and RAPD. Theor Appl Genet 95: 1229-1238.
  • Fritsch RM, 1997. Relations between west and central Asian sections of Allium L. subg. Melanocrommyum (Webb et Berth.) Rouy. In: Ozturk MV, Secmen V, Gork G, eds. Plant life in southwest and central Asia. Proceedings of 4th Plant Life of Southwest Asia Symposium 21-28 May 1995, Izmir, Turkey: 128-140.
  • GenStat, 1993. Genstat 5 Release 3 Reference Manual. GenStat 5 Committee, Oxford: Clarendon Press.
  • Gottlieb LD, 1973. Enzyme differentiation and phylogeny in Clarkia franciscana, C. rubicanda and C. amoena. Evolution 27: 205-214.
  • Hamrick JL, Linhart YB, Mitton JB, 1979. Relationships between life history characteristics and electrophoretically detectable genetic variation in plants. Am Rev Ecol Syst 10: 173-200.
  • Hong C-J, Arisumi K, Etoh T, 1996. RAPD analysis of ornamental alliums for phylogenetic relationship. Mem Fac Agr Kagoshima Univ 32: 51-58.
  • Ipek M, Simon P, 2002. Evaluation of genetic diversity among allium clones using molecular markers: comparison of AFLPs, RAPD and isozymes. Plant & Animal Genome X Meeting, Posters: 5;http://www.ars.usda.gov/Research/docs.htm?doc id=6357, 30th January 2007.
  • Kamenetsky R, Fritsch RM, 2002. Ornamental alliums. In: Rabinowitch HD, Currah L, eds. Allium Crop Science: Recent Advances. CABI Publishing, Oxon: 459-491.
  • King LM, Schaal BA, 1990. Genotypie variation within asexual linkages of Taraxacum officinale. Proc Nat Acad Sci 87: 998-1002.
  • Klass M, Friesen N, 2002. Molecular markers in Allium. In: Rabinowitch HD, Currah L, eds. Allium Crop Science - Recent Advances. CABI Publishing, Oxon: 159-185.
  • Linne von Berg G, Samoylov A, Klaas M, Hanelt P, 1996. Chloroplast DNA restriction analysis and the infrageneric grouping of Allium (Alliaceae). Plant Syst Evol 200: 253-261.
  • Maass HI, Klaas M, 1995. Infraspecific differentiation of garlic (Allium sativum L.) by isozyme and RAPD markers. Theor Appl Genet 91: 89-97.
  • Nei M, Li WH, 1979. Mathematical model for studying genetic variation in terms of restriction endonucleases. Proc Nat Acad Sci 90: 10972-10976.
  • Pooler MR, Simon PW, 1993. Characterization and classification of isozyme and morphological variation in a diverse collection of garlic clones. Euphytica 68: 121-130.
  • Samoylov A, Friesen N, Poolner S, Hanelt P, 1999. Use of chloroplast DNA polymorphism for the study of Allium subgenus Amerallium and subgenus Bromatorrhiza (Alliaceae,) II. Feddes Repert: 103-109.
  • Selander RK, Smith MH, Yang SY, Johnson WE, Gentry JB, 1971. Biochemical polymorphism and systematics in the genus Peromyscus. I. Variation in the old-field mouse (Peromyscus polionotus). Univ Tech Publ 7103: 49-90.
  • Święcicki W, Wolko B, Apisitwanich S, Krajewski P, 2000. An analysis of isozymic loci polymorphism in the core collection of the Polish Pisum genebank. Genet Resour Crop Ev 47: 583-589.
  • Traub BH, 1968. The subgenera, sections and subsections of Allium L. Plant Life 24:147-163.
  • Traub BH, 1972. Genus Allium L. - subgenera, sections and subsections. Plant Life 28:132-137.
  • Virk P, Zhu J, Newbury H, Bryan G, Jackson M, Ford-Lloyd B, 2000. Effectiveness of different classes of molecular markers for classifying and revealing variation in rice (Oryza sativa) germplasm. Euphytica 112: 275-284.
  • Weeden NF, 1987. Observation of linkage between Wsp and isozyme locus Alat-p. Pisum Newslett 19: 80-81.
  • Wolko B, 1995. Markery molekularne w badaniach genetycznych rodzaju Lupinus. [Molecular markers in genetic studies of the genus Lupinus]. Hodowla Roślin i Nasiennictwo 39: 3-64.
  • Wolko B, Święcicki WK, 1987. The application of electrophoretic methods of isozymes separation for genetical characterization of pea cultivars. Genet Pol 26: 89-99.
  • Wolko B, Święcicki W, Kruszka K, Irzykowska L, 2000. Isozyme and RAPD markers for the identification of pea, field bean and lupin cultivars. J Appl Genet 41: 151-165.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-f1052fa0-874e-43b0-9424-f6458e8a3c6f
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.