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DEVELOPMENT OF SYSTEMS OF MULTIPLEX PCR TO IDENTIFY GENES OF RESISTANCE TO MAGNAPORTHE GRISEA (HERBERT) BARR. AND SELECTION OF NEW RESISTANT FORMS (DONORS) ORYZA SATIVA L. TO PATHOGEN

Abstract

Imperfect fungus Magnaporthe grisea is a phyto pathogen with a vast influence on most crops including rice. Economic damage of the disease is enormous in all rice cultivation zones of the world. The purpose of the work is to create some cultivars and lines of rice with tree and more genes resistant to pyriculariosis using the method of molecular marking. We introduced and pyramided of Pi-ta, Pi-b, Pi-1, Pi-2, Pi-33 genes resistant to pyriculariosis into domestic cultivars of rice to give them longer resistance to the disease. DNA-markers analysis allowed revealing disease resistant rice samples which possess 5 aimed genes in homozygous condition. The results of phyto pathological testing showed their resistance to a mixture of isolators of M.grisea pathogen, found in Krasnodar Krai.  To increase economic efficiency of marker-assisted selection we developed a system of multiplex PCR which can simultaneously identify three Pi-1+Pi-2+Pi-33 genes resistant to M. grisea in a DNA genome of hybrids under one PCR. Its use allows reducing costs of material and time for analyzing of rice samples.

About the Authors

E. V. Dubina
All-Russian Research Institute of Rice
Russian Federation

Candidate of Biology.

Krasnodar, v. Belozerny, 3



P. I. Kostylev
FSBSE All-Russian Research Institute of Grain Crops after I.G. Kalinenko
Russian Federation

Doctor of Agricultural Sciences.

347740, Zernograd, Nauchny Gorodok, 3; vniizk30@mail.ru

 



L. V. Esaulova
All-Russian Research Institute of Rice
Russian Federation

Candidate of Biology.

Krasnodar, v. Belozerny, 3

 

 



References

1. Zelensky, G.L. Perspectives of rice selection with high productivity and adaptive properties/G.L. Zelensky // Rice-growing. - 2003. – № 3. P. 11.

2. Zelensky, G.L. Selection of rice cultivars, resistant to pyriculariosis, rice blast disease and bacterial burn in the conditions of RF: synopsis on scientific degree of doctor of Agricultural sciences competition/ G.L. Zelensky.- Krasnodar. – 1993. – 49 p.

3. Diakov, Yu.T. General and Molecular Phytopathology/Yu.T. Diakov,O.L. Ozeretskovskaya, V.G. Dzhavakhiya,S.F. Bagirova.- M.: Society of Phytopathologists, – 2001. 301 p.

4. Khavkin, E.E. Molecular plant selection: DNA-technology for selection of new cultivars of crops/E.E. Khavkin // Agricultural Biology. - 2003. - № 3. - P. 26-41.

5. Kovalenko, E.D. Methodical instructions on assessment of rice resistance to pyriculariosis/E.D. Kovalenko,Yu.V. Gorbunova,A.A. Kovaleva and others. - М., 1988. – 30 p.

6. Kolomiets, T.M. Selection of initial material of rice for selection on immunity to pyriculariosis: synopsis on scientific degree of doctor of Biology competition/Т.М. .- Golitsyno, 1990.- 21 p.

7. Murray, M.G. Rapid isolation of high molecular weight plant DNA/M.G. Murray, Thompson Genomt.- V. 40.-Р. 379-378.

8. Mukhina Zh.M., Tokmakov S.V., Myagkikh Yu.A., Dubina E.V. Development of intragenic molecular markers of rice to increase efficiency of selection and seed-growing processes// Polythematic network e-journal of KubSAU. - 2011- № 67 (03).


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For citations:


Dubina E.V., Kostylev P.I., Esaulova L.V. DEVELOPMENT OF SYSTEMS OF MULTIPLEX PCR TO IDENTIFY GENES OF RESISTANCE TO MAGNAPORTHE GRISEA (HERBERT) BARR. AND SELECTION OF NEW RESISTANT FORMS (DONORS) ORYZA SATIVA L. TO PATHOGEN. Grain Economy of Russia. 2015;(1):63-71. (In Russ.)

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ISSN 2079-8725 (Print)
ISSN 2079-8733 (Online)