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2002 | 07 | 2B |

Tytuł artykułu

The application of the AFLP method to determine the purity of homozygous lines of barley [Hordeum vulgare L.]

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Amplified fragment length polymorphism of DNA has been used to analyse the equality of plants obtained from isolated microspores. Although the control parental material was regarded as being highly homozygous, the analysis of the banding patterns of single plants showed a certain level of polymorphism. The analysis of regenerants with a doubled chromosome number did not show any diversity within the progeny of a single line. The differences in banding patterns coming from single plants were only observed in microspore donor lines. These results have proven the high purity of homozygous lines obtained via androgenesis from isolated microspores.

Wydawca

-

Rocznik

Tom

07

Numer

2B

Opis fizyczny

p.777-783,fig.

Twórcy

autor
  • Plant Breeding and Acclimatization Institute, Radzikow, 05-870 Blonie, Poland
autor

Bibliografia

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  • 2. Rafalski, A. J., Morgante, M., Powell, W., Vogel, J. M. and Tingey, S. V. Generating and using DNA markers in plants. In: Non-mammalian Genomic Analysis: A Practical Guide (Birren, B. and Lai, E. Eds) Academic Press Boca Raton 1996, 75-134.
  • 3. Gupta, P. K., Varshney, R. K., Sharma, P. C. and Ramesh, B. Molecular markers and their applications in wheat breeding. Plant Breed. 118 (1999) 369-390.
  • 4. Cho, Y. G., Blair, M. W., Panaud, O. and McCouch, S. R. Cloning and mapping of variety-specific rice genomic DNA sequences: amplified fragment length polymorphism (AFLP) from silver-stained polyacrylamide gels. Genome 39 (1996) 373-378.
  • 5. Qi, X., Stam, P. and Lindhout, P. Use of locus-specific AFLP markers to construct a high-density molecular map in barley. Theor. Appl. Genet. 96 (1998) 376-384.
  • 6. Russell, J. R., Fuller, J. D, Young, G., Thomas, B., Taramino, M., Macaulay, M., Waugh, R. and Powell, W. Discrimination between barley genotypes using microsatellite markers. Genome 40 (1997a) 442-450.
  • 7. Zabeau, M. and Vos, P. Selective restriction fragment amplification: general method for DNA fingerprinting. European Patent 1993 Application number 92402629.7. Publication number 0 534 858 A1.
  • 8. Ma, Z.-Q. and Lapitan, N. L. V. A comparison of amplified and restriction fragment length polymorphism in wheat, Cereal Res. Commun. 26 (1998) 7-13.
  • 9. Bohn, M., Utz, H. F. and Melchinger, A. E. Genetic similarities among winter wheat cultivars determined on the basis of RFLPs, AFLPs, and SSRs and their use for predicting progeny variance. Crop Sci. 39 (1999) 228-237.
  • 10. Ellis, R. P., McNicol, J. W., Baird, E., Booth, A., Lawrence, P., Thomas, B. and Powell, W. The use of AFLPs to examine genetic ralatedness in barley. Mol. Breed. 3 (1997) 359-369.
  • 11. Mackill, D. J., Zhang, Z., Redona, E. D. and Colowit, P. M. Level of polymorphism and genetic mapping of AFLP markers in rice. Genome 39 (1996) 969-977.
  • 12. Bert, P. F., Charmet, G., Sourdille, P., Hayward, M. D. and Balfourier, F. A high-density molecular map for reygrass (Lolium perenne) using AFLP markers. Theor. Appl. Genet. 99 (1999) 445-452.
  • 13. Vos, P., Hogers, R., Reijans, M., van de Lee, T., Hornes, M., Friters, A., Pot, J., Peleman, J., Kupier, M. and Zabeau, M. AFLP: a new technique for DNA fingerprinting. Nucleic Acids Res. 23 (1995) 4407-4414.
  • 14. Mordhorst, A. P. and Lörz, H. Embryogenesis and development of isolated barley (Hordeum vulgare L.) microspores are influenced by the amount and composition of nitrogen sources in culture media. J. Plant Physiol. 142 (1993) 485-492.
  • 15. Chu, C. C. The N6 medium and its applications to anther culture of cereal crops. Proc. Symp. Plant Tissue Culture, Science Press Beijing 1978 43-50.
  • 16. Li, H., Qureshi, J. A. and Kartha, K. The influence of different temperature treatments on anther culture response of spring wheat (Triticum aestivum L.). Plant Sci. 57 (1988) 55-61.
  • 17. Zhuang, J. J. and Xu, J . Increasing differentiation frequencies in wheat pollen callus. In: Cell and Tissue Culture Techniques for Cereal Crop Improvement (Hu, H. and Vega, M. R. Eds) Science Press Beijing 1983 431.
  • 18. Russell, J. R., Fuller, J. D., Macaulay, M., Hatz, B. G., Jahoor, A., Powell, W. and Waught, R. Direct comparison of levels of genetic variation among barley accessions detected by of RFLPs, AFLPs, SSRs and RAPDs. Theor. Appl. Genet. 95 (1997b) 714-722.
  • 19. Becker, J., Vos, P., Kupier, M., Salamini, F. and Heun, M. Combined mapping of AFLP and RFLP markers in barley. Mol. Gen. Genet. 249 (1995) 65-73.
  • 20. Maheswaran, M., Subudhi, P. K., Nandi, S., Xu, J. C., Parco, A., Yang, D. C. and Huang, N. Polymorphism, distribution, and segregation of AFLP markers in doubled haploid rice population. Theor. Appl. Genet. 94 (1997) 39-45.
  • 21. Powell, W., Morgante; M., Andre, C., Hanafey, M., Vogel, J., Tingey, S. and Rafalski, A. The comparison of RFLP, RAPD, AFLP and SSR (microsatellite) for germplasm analysis. Mol. Breed. 2 (1996) 225-238.
  • 22. Chen, Y., Hausner, G., Kenaschuk, E., Procunier, D., Dribnenki, P. and Penner, G., Identification of microspore-derived plants in anther culture of flax (Linum usita tissimum L.) using molecular markers. Plant Cell Rep. 18 (1998) 44-48.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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