Problems of rational use of genetic resources of plants resistance to diseases



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Abstract

The decision of a complex problem of rational use of plants genetic resources of resistance to diseases is based on principles of maintenance of a genetic diversity of resistance. The development of methodology of grain crops breeding with durable resistance to diseases is based on knowledge of evolutionary potential of most harmful pathogens and genetics of host-pathogen interactions. For molecular mapping of genes determined barley resistance to net blotch, spot blotch and scald double haploid barley populations were developed. Molecular mapping of genomes both plants and pathogens will promote the development of DNa- technologies in plant breeding.

About the authors

Olga S Afanasenko

All-Russia Research Institute for Agricultural Microbiology, Saint-Petersburg, RF

Email: olga.afanasenko@gmail.com

Kapiton V Novozhilov

All-Russia Research Institute for Agricultural Microbiology, Saint-Petersburg, RF

Email: vizrspb@mail333.com

References

  1. Афанасенко О. С., 1995. Характеристика устойчивости некоторых сортообразцов ячменя к различным популяциям возбудителя сетчатой пятнистости Pyrenophora teres (Died.) Drechsler f. sp. teres//Микол. и фитопатол. Т. 29. Вып. 4. С. 27-32.
  2. Афанасенко О. С., Мироненко Н. В., Филатова О. А., Серениус М., 2007. Структура популяций Pyrenophora teres f. teres в Ленинградской области и Финляндии по признаку вирулентности//Микол. и фитопатол. Т. 41. Вып. 3. С. 261-268.
  3. Лашина Н. М., Анисимова А. В., Афанасенко О. С., Маннинен О., 2009. Определение эффективности регенерации в культуре пыльников у образцов ячменя, устойчивых к пятнистостям листьев//Вестник защиты растений. № 1. С. 48-51.
  4. Мироненко Н. В., 2005. Молекулярно-генетические механизмы специализации возбудителей «гельминтоспориозных» пятнистостей зерновых культур. Автореферат докт. дис. СПб, 42 с.
  5. Новожилов К. В., Афанасенко О. С., Мироненко Н. В. и др., 2008. Создание генетически разнородного исходного материала для селекции ячменя и пшеницы на устойчивость к листовым пятнистостям//Материалы второй международной конференции «Современные проблемы иммунитета растений к вредным организмам», 29 сентября -2 октября 2008, г. Санкт-Петербург, Россия. С. 165-167.
  6. Afanasenko O., 2001. Investigations on populations of Pyrenophora teres f. teres, the cause of net blotch of barley//J. Russian Phytopathol. Soc. Vol. 2. P. 9-18.
  7. Afanasenko O., Mironenko N., Filatova O. et al., 2007. Genetics of host-pathogen interactions in the Pyrenophora teres f. teres (net form) -barley (Hordeum vulgare) pathosystem//Eur. J. Plant Pathol. Vol. 117. P. 267-280.
  8. Beattie A. D. 2006. Genomic analysis of Pyrenophora teres: avirulence gene mapping, karyotyping and genetic map construction. Dr. Philosophy Thesis. University of Saskatchewan Saskatoon, Canada. 144 p.
  9. Bonman J. M., Khush G. S., Nelson R. J. 1992. Breeding rice for resistance to pests//Ann. Rev. Phytopathol. Vol. 30. P. 507-528.
  10. Brueggeman R., Rostoks N., Kudma D. et al., 2002. The barley stem rust-resistance gene Rpg1 is a novel disease-resistance gene with homology to receptor kinases//Proc Natl. Acad. Sci. USA. Vol. 99. P. 9328-9333.
  11. Caicedo A. L., Schaal B. A., 2004. Heterogeneous evolutionary processes affect R gene diversity in natural populations of Solanum pimpinellifolium//Proc. Natl. Acad. Sci. USA. Vol. 101. P. 17444-17449.
  12. Choo T. M., Reinbergs E., Kasha K. J., 1985. Use of haploids in breeding barley//Plant breeding Rev. Vol. 3. P. 219-252.
  13. Dodds P. N., Lawrence G. J., Catanzariti A. M. et al., 2004. The Melampsora lini AvrL567 avirulence genes are expressed in haustoria and their products are recognized inside plant cells//Plant Cell. Vol. 16. P. 755-768.
  14. Dunwell J. M., Bright S. W., Jones M. K., 1985. Anther and ovary culture//Cereal Tissue and Cell Culture. Martinus Nijhoff/Dr. W. Junk, Dordrecht. -P. 1-44.
  15. Jensen C. J., Pollard L., Lee X. W., 1983. Produsing haploid plants by chromosome elimination//Cell and tissue techniques for cereal crop improvement. Science Press. P. 55-79.
  16. Jorgensen J. H., 1992. Sources and genetics of resistance to fungal pathogens//In: Barley: Genetics, Biocemistry Molecular Biology and Biotechnology. Ed. Shevry P. R. Alden Press, Oxford., P. 442-457.
  17. Kolmer J. A., 1996. Genetics of resistance to wheat leaf rust//Ann. Rev. Phytopathol., Vol. 34. P. 435-455.
  18. Kolster P., Munk L., Stolen O., Lohde J., 1986. Nearisogenic barley lines with genes for resistance to powdery mildew//Crop Sci.. Vol. 26. P. 903-907.
  19. Leonard K. J., 1997. Modelling gene frequency dynamics. The gene-for-gene relationship in plant-parasite interaction. Wallingford UK. P. 211-231.
  20. Limpert B., Bartos B., 1997. Analysis of pathogen virulence as decision support for breeding and cultivar choice//Resistance of Crop Plants against Fungi/Eds. H. Hartleb, R. Heitefuss, H.-H. Hoppe. Gustav Fisher Verlag-Jena-Stuttgart-Lubeck-Ulm. P. 401-424. 6.
  21. Manninen O., Jalli M., Kalendar R. et al., 2006. Mapping of major spot-type and net-type net blotch resistance genes in the Ethiopian barley line CI 9819//Genome. Vol. 49. P. 1564-1571.
  22. Mew T. W., 1987. Current status and future prospects of research on bacterial blight of rice//Ann. Rev. Phytopathol. Vol. 25. P. 359-382.
  23. Noel L., Moores T. L., van Der Biezen E. A. et al., 1999. Pronounced intraspecific haplotype divergence at the RPP5 complex disease resistance locus of Arabidopsis//Plant Cell. Vol. 11. P. 2099-2112.
  24. Parlevliet J. E., 1997. Durable resistance//Resistance of Crop Plants against Fungi. Ed. H. Hartleb, R. Heitefuss, H.-H. Hoppe. Gustav Fisher Verlag-Jena-Stuttgart-Lubeck-Ulm. P. 238-253.
  25. Parniske M., Hammond-Kosack K. E., Golstein C. et al., 1997. Novel disease resistance specificities result from sequence exchange between tandemly repeated genes at the Cf-4/9 locus of tomato//Cell. Vol. 91. P. 821-832.
  26. Rose L. E., Bittner-Eddy P. D., Langley C. H. et al., 2004. The maintenance of extreme amino acid diversity at the disease resistance gene, RPP13, in Arabidopsis thaliana//Genetics. Vol. 166. P. 1517-1527.
  27. Singh S., Sidhu J. S., Huang N. et al., 2001. Pyramiding three bacterial blight resistance genes (xa5, xa13 and Xa21) using marker-assisted selection into indica rice cultivar PR106//Theor. Appl. Genet. Vol. 102. P. 1011-1015.
  28. Steffenson B. J., 2000. Durable resistance to spot blotch and stem rust in Barley//Proc. of the 8th International Barley Genetics Symposium. 22-27 October. P. 39-44.
  29. Tao Y., Yuan F. H., Leister R. T. et al., 2000. Mutational analysis of the Arabidopsis nucliotide binding site-leucine-rich repeat resistance gene RPS2//Plant Cell. Vol. 12. P. 2541-2554.
  30. Vera Cruz C. M., Bai J., Ona I. et al., 2000. Predicting durability of a disease resistance gene based on an assessment of the fitness loss and epidemiological consequences of avirulence gene mutation//Proc Natl. Acad. Sci. USA. Vol. 97. P. 13500-13505.
  31. Wolfe M. S., Finckh M. R., 1997. Diversity of host resistance within the crop: effects on host, pathogen and disease//Resistance of Crop Plants against Fungi/Ed. H. Hartleb, R. Heitefuss, H.-H. Hoppe. Gustav Fisher Verlag-Jena-Stuttgart-Lubeck-Ulm. P. 378-400.
  32. Zhu Y., Chen H., Fan J. et al., 2000. Genetic diversity and disease control in rice//Nature. Vol. 406. P. 718-722.

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Copyright (c) 2009 Afanasenko O.S., Novozhilov K.V.

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