http://doi.org/10.15407/visn2014.03.057
Visn. Nac. akad. nauk Ukr 2014, (3): 57—66

V.F. Petrychenko1, S.Ya. Kots2
1Institute of Feed and Agriculture of Podillya of National Academy of Agrarian Sciences of Ukraine, Vinnytsa
2Institute of Plant Physiology and Genetics of National Academy of Sciences of Ukraine, Kyiv

SYMBIOTIC SYSTEMS IN MODERN AGRICULTURAL MANUFACTURE

Abstract:
The paper is devoted to problem of biologization of agricultural manufacture, in particular to issues of biological nitrogen, the role of microorganisms in resupply its stocks in the soil and increasing of plant productivity through the use of bacterial preparations. The contribution of Ukrainian scientists to solving this problem was considered, in particular it was presented the environmentally friendly technology provided by them to obtaining of plant protein through the use of symbiotic interaction of high effective microorganisms with modern cultivars of legume plants. It was proved the economic effect of implementing of this technology into manufacture.
Keywords: biological nitrogen fixation, symbiosis, bacterial preparations, legumes, selection, protein production.

 

Language of article: ukrainian.

References:

  1. Petrychenko V.F., Panacyuk Ya.Ya. Agrobiological bases of optimization of crop rotation and their performance in Ukraine. (Vinnitsya, 2012). [in Ukrainian].
  2. Patyka V.P., Tihonovich I.A., Filip'yev I.D. Microorganisms and alternative agriculture. (Kyiv: Urozhay, 1993). [in Ukrainian].
  3. Manʹko K., Muzafarov N. Agronom. 2012. (3): 86–91. [in Ukrainian].
  4. Kvitko G.P. Ph.D (Agr.) Thesis. (Kyiv, 1999). [in Ukrainian].  
  5. Markov I. Agrobiznes segodnya. 2013. (9): 26–28. [in Ukrainian].
  6. Tolkachev N.Z. Visnyk ONU. 2001. 6(4): 309–312. [in Russian].
  7. Petrychenko V.F., Kots S.Ya. Visnyk agrarnoyj nauki. 2012. (8): 5–11. [in Ukrainian].
  8. Kots S.Ya., Patyka V.P. Biological nitrogen. (Kyiv: Svit, 2003). [in Ukrainian].
  9. Kots S.Ya., Morgun V.V., Patyka V.P. Biological nitrogen fixation. (Kyiv: Logos, 2010). [in Russian].
  10. Kozhemyakov A.P. Microbiologichny Zhurnal (Microbiology Journal). 1997. 59(4): 22–28. [in Russian].
  11. Kots S.Ya., Malíchenko S.M., Krugova O.D. Physiological and biochemical characteristics of the power plant biological nitrogen. (Kyiv: Logos, 2001). [in Ukrainian].
  12. Mishustin Ye.N. (ed.) The mineral and organic nitrogen in agriculture USSR. (Moscow: Nayka, 1985). [in Russian].
  13. Morgun V.V., Kots S.Ya. Fiziologiya i biokhimiya kul'turnykh rasteniy. 2008. 40(3): 187–205. [in Ukrainian].
  14. Kots S.Ya. Fiziologiya i biokhimiya kul'turnykh rasteniy. 2011. 43(3): 212–25. [in Ukrainian].
  15. Kots S.Ya. Fiziologiya i biokhimiya kul'turnykh rasteniy. 2012. 44(1): 23–40. [in Russian].
  16. Petrychenko V., Babych A., Ivanyuk S. Soybean: State and perspective of the development in the Ukraine. Legume Perspectives. 2013. (1): 37.
  17. Volkogon V.V. Microbiological aspects of optimizing nitrogen fertilization of crops. (Kyiv: Agronauka, 2007). [in Ukrainian].
  18. Ignatov V.V. The molecular basis of the relationship associative microorganisms with plants. (Moscow: Nauka, 2005). [in Russian].
  19. Kyrychenko O.V., Malichenko S.M. Patent Ukraine 55620A C05F11/08. 15.04.03.
  20. Kyrychenko O.V., Tytova L.V., Kots S.Ya. Patent Ukraine 62819A C05F11/08. 15.12.03.
  21. Kots S.Ya., Morgun V.V., Patyka V.P. Biological nitrogen fixation. Vol. 2. (Kyiv: Logos, 2011). [in Ukrainian].
  22. Patyka V.P., Kruglov Yu.V. Doklady RASKH. 2008. (6): 21‒23. [in Russian].
  23. Patyka N.V., Kruglov Yu.V. TRFLP Profile of the Assemblage of Prokaryotic Microorganisms in Podzolic Soils. Rus. Agric. Sci. 2008. 34(6): 386388. http://doi.org/10.3103/S1068367408060074
  24. Googley F., Baudry J., Berry R.J. What is the road of sustainability? INTECOL Bull. 1992. 20: 15‒20.
  25. Tikhonovich I.A., Provorov N.A. Selskokhozyaystvennaya biologiya. 1993. (5): 36‒46. [in Russian].
  26. Shumnyy V.K., Sidorova K.K. Biological nitrogen fixation. (Novosibirsk: Nauka, 1991). [in Russian].
  27. Vance C.P. Symbiotic nitrogen fixation and phosphorus acquisition. Plant nutrition in the world of declining renewable resources. Plant Physiol. 2001. 127: 390‒97. http://doi.org/10.1104/pp.010331
  28. Kozhemyakov A.P., Tikhonovich I.A. Doklady RASKH. 1998. (6): 7‒10. [in Russian].
  29. Vance C.P. Legume Symbiotic Nitrogen Fixation: Agronomic Aspects. In: The Rhizobiaceae: Molecular Biology of Model Plant-Associated Bacteria (Spaink H.P., Kondorosi A., Hooykaas P.J.J. eds.). (Springer, 1998) http://doi.org/10.1007/978-94-011-5060-6_26
  30. Provorov N.A., Simarov B.V. Genetika. 1992. 28(6): 5‒14. [in Russian].
  31. Robinson A.C. Host selection for effective Rhizobium trifolii by red clover and subterranean clover in the field. Austr. J. Agric. Res. 1969. 20: 1053‒60. http://doi.org/10.1071/AR9691053
  32. Desai A. Rhizobial haemoglobin and aminolevulinic and synthetase activity in Rhizobium japonicum. Indian J. Exp. Biol. 1977. 15(17): 528‒30.
  33. Nutman P.S., Bergersen F.J. Symbiotic effectiveness in nodulated red clover. Heredity. 1957. 11: 157‒73. http://doi.org/10.1038/hdy.1957.14
  34. Milto N.I. Nodule bacteria and leguminous plants productivity. (Minsk: Nauka I Tehnika, 1982). [in Russian].
  35. Kots S.Ya., Morgun V.V., Tikhonovich I.A. Biological nitrogen fixation. Vol. 3. (Kyiv: Logos, 2011). [in Ukrainian].
  36. Kots S.Ya., Beregovenko S.K.., Kirichenko Ye.V., Melnikova N.N. Features of interaction of nitrogen-fixing plants and microorganisms. (Kyiv: Naukova Dumka, 2007). [in Russian].
  37. Khurana A.L., Sharma P.K., Dudeja S.S. Influence of host, moisture and native rhizobial population on nodule occupancy in chickpea (Cicer arietinum). Zentralbl. Mikrobiol. 1991. 146(2): 137‒41.