biologia plantarum

International journal on Plant Life established by Bohumil Němec in 1959

Biologia plantarum 39:543-552, 1997 | DOI: 10.1023/A:1000922613713

Identification of wild and cultivated Hordeum species using two-primer RAPD fragments

P.V. Reddy1, K.M. Soliman1
1 Department of Plant and Soil Science, Alabama A&M University, Normal, USA

Random amplified polymorphic DNAs (RAPD) analysis has been adapted to assess the degree of RAPD polymorphism within the genus Hordeum to determine if this approach can distinguish wild and cultivated species. Nineteen wild and seven cultivated accessions were evaluated using 4 random 10-mer primers. The potential of the RAPD assay was further increased by combining two primers in a single polymerase chain reaction (PCR). RAPD fragments generated by two pairs of arbitrary 10-mer primers discriminated six wild species and one cultivated species by banding profiles. The size of the amplified DNA fragments ranged from 150 to 2300 base pairs. 33 %percent of the fragments were common to both wild and cultivated species; 67% were specific to either wild or cultivated species. The average difference in fragments was less within the species than among the species. By comparing RAPD fingerprints of wild and cultivated barley, markers were identified among the set of amplified DNA fragments which could be used to distinguish wild and cultivated Hordeum species.

Keywords: barley; DNA polymorphism; polymerase chain reaction
Subjects: barley, wild and cultivated species; DNA, polymorphism, barley; Hordeum species; phylogenic tree, barley; polymerase chain reaction; RAPD analysis

Prepublished online: May 1, 1997; Published: December 1, 1997  Show citation

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Reddy, P.V., & Soliman, K.M. (1997). Identification of wild and cultivated Hordeum species using two-primer RAPD fragments. Biologia plantarum39(4), 543-552. doi: 10.1023/A:1000922613713
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References

  1. Bonierbale, M.W., Paisted, R.L., Tanksley, S.D.: RFLP maps based on a common set of clones reveal modes of chromosomal evolution in potato and tomato.-Genetics 120: 1095-1103, 1988. Go to original source...
  2. Bothmer, R.V.: Revision of the Asiatic taxa of Hordeum sect. Stenostachys.-Bot. Tidsskr. 74: 117-147, 1979.
  3. Bothmer, R.V., Jacobsen, N.: Interspecific crosses in Hordeum (Poaceae).-Plant Syst. Evol. 153: 49-64, 1986. Go to original source...
  4. Bothmer, R.V., Flink, J., Jacobsen, N., Kotimaki, M., Landstorm, T.: Interspecific hybridization with cultivated barley (Hordeum vulgare L.).-Hereditas 99: 219-244, 1983. Go to original source...
  5. Bothmer, R.V., Flink, J., Jacobsen, N., Jorgensen, R.B.: Variation and differentiation in Hordeum marinum.-Nordic J. Bot. 9: 1-10, 1989a. Go to original source...
  6. Bothmer, R.V., Flink, J., Landstorm, T.: Meiosis in interspecific Hordeum hybrids. I. Diploid hybrids.-Can. J. Genet. Cytol. 28: 525-535, 1986. Go to original source...
  7. Bothmer, R.V., Flink, J., Landstorm, T.: Meiosis in interspecific Hordeum hybrids. VI. Hexaploid hybrids.-Evol. Trends Plants 3: 53-58, 1989b.
  8. Clegg, M.T., Brown, A.H.D.: Whitfeld PR chloroplast DNA diversity in wild and cultivated barley: implications for genetic conservation.-Genet. Res. Cambridge 43: 339-343, 1984. Go to original source...
  9. Doebley, J., Bothmer, R.V., Larson, S.: Chloroplast DNA variation and the phylogeny of Hordeum (Poaceae).-Amer. J. Bot. 79: 576-584, 1992. Go to original source...
  10. Gupta, P.K., Fedak, G., Molnar, S.J., Wheatcroft, R.: Distribution of Secale cereale DNA repeat sequence among 25 Hordeum species.-Genome 32: 383-388, 1989. Go to original source...
  11. Holwerda, B.C., Jana, S., Crosby, W.L.: Chloroplast and mitochondrial DNA variation in Hordeum vulgare and Hordeum spontaneum.-Genetics 114: 1271-1291, 1986. Go to original source...
  12. Jorgenson, R.B.: Biosystematics of Hordeum bulbosum L.-Nordic J. Bot. 2: 421-434, 1982. Go to original source...
  13. Jorgenson, R.B.: Relationships in the barley genus (Hordeum): an electrophoretic examination of proteins.-Hereditas 104: 273-291, 1986. Go to original source...
  14. Kasha, K.J., Sadasivaiah, R.S.: Genome relationships between Hordeum vulgare L. and H. bulbosum L.-Chromosoma 35: 264-287, 1971. Go to original source...
  15. Kataoka, J., Ogihara, Y., Tsunewaki, K.: Chloroplast DNA variation observed among Hordeum species.-Barley Genet. 5: 515-524, 1987.
  16. Klein-Lankhorst, R.M., Rietveld, P., Machiels, B., Verkerk, R., Weide, R., Koornneef, M., Zabel, P.: RFLP markers linked to the root knot nematode resistance gene Mi in tomato.-Theor. appl. Genet. 81: 661-667, 1991. Go to original source...
  17. Linde-Laursen, I.R., Bothmer, R., Jacobsen, N.: Giemsa C-banding in Asiatic taxa of Hordeum section Stenostachys with notes on chromosome morphology.-Hereditas 93: 235-254, 1980. Go to original source...
  18. Murray, M.G., Thompson, W.F.: Rapid isolation of high molecular weight plant DNA.-Nucl. Acids Res. 8: 4321-4325, 1980. Go to original source...
  19. Neale, D.B., Saghai-Maroof, M.A., Allard, R.W., Zhang, Q., Jorgenson, R.A.: Chloroplast DNA diversity in populations of wild and cultivated barley.-Genetics 120: 1105-1110, 1986. Go to original source...
  20. Saghai-Maroof, M.A., Soliman, K.M., Jorgensen, R.A., Allard, R.W.: Ribosomal DNA spacer-length polymorphisms in barley: Mendelian inheritance, chromosomal location, and population dynamics.-Proc. nat. Acad. Sci. USA 81: 8014-8018, 1984. Go to original source...
  21. Slocum, M.K., Figdore, S.S., Kennard, W.C., Suzuki, Y.J., Osborn, T.C.: Linkage arrangement of restriction fragment length polymorphism loci in Brassica oleracea.-Theor. appl. Genet. 80: 57-64, 1990. Go to original source...
  22. Subrahmanyam, N.C.: Haploidy from Hordeum interspecific crosses. 1. Polyhaploids from H. parodii and II. procerum.-Theor. appl. Genet. 49: 209-217, 1977. Go to original source...
  23. Swofford, D.L.: PAUP: Phylogenetic Analysis Using Parsimony (version 3.1 computer program).-Illinois Natural History Survey, Champaign 1993.
  24. Tanksley, S.D., Young, N.D., Paterson, A.II., Bonierbale, M.W.: RFLP mapping in plant breeding: new tools for an old science.-Bio/Technology 7: 257-264, 1989. Go to original source...
  25. Wang, R.C.: An assessment of genome analysis based on chromosome pairing in hybrids of perennial Triticeae.-Genome 32: 179-189, 1989. Go to original source...
  26. Welsh, J., McClelland, M.: Fingerprinting genomes using PCR with arbitrary primers.-Nucl. Acids Res. 18: 7213-7218, 1990. Go to original source...
  27. Williams, J.G.K., Kubelik, A.R., Livak, K.J., Rafalski, J.A., Tingley, S.V.: DNA polymorphisms amplified by arbitrary primers are useful as genetic markers.-Nucl. Acids Res. 18: 6531-6535, 1990. Go to original source...
  28. Wrigley, C.W., Batey, I.L., Skerritt, J.H.: Complementing traditional methods of identifying cereal varieties with novel procedures.-Seed Sci. Technol. 15: 679-688, 1987.