eISSN: 2221-6197 DOI: 10.31301/2221-6197

The influence of the physiological potential of cyanobacteria on plant-microbe interaction

Year: 2018

Pages: 162-164

Number: Volume 10, issue 2

Type: scientific article

Summary:

Physiological and biochemical potential of the cyanobacterial strains of Nostoc sphaeroides Kützing 4 (ACSSI 150) and Desmonostoc muscorum (C. Agardh ex Bornet et Flahault) Hrouzek et Ventura 1 (ACSSI 091)and its potential influence on the efficiency of plant-microbe interactions studied with using microbiological, biotechnological, physiological and biochemical, and statistical methods. The dynamics of accumulation of biomass of cells and catalase activity, dynamic of change of amount of carotenoids, and providing of 14 micro- and macroelements of nutrients during the annual cycle cultivation of strains investigated. Correlations and functional dependences in the system «physiological and biochemical potential of cyanobacteria – plant productivity Triticum aestivum Linné» established. It is experimentally proved that artificial cultivation influence on the metabolic potential of phototrophic strains, bacterization of which is the decisive factor determining the productivity of the plant, and can have a stimulating / inhibiting effect on the plants in  depending on the conditions of cultivation. This is important for biotechnology to create microbial drugs stimulating and herbicidal action.

 

Keywords:

strains, cyanobacteria, physiological potential, bacterization, the stimulation, inhibition of plant growth, microbial preparation, bioherbicide

References:

  1. Gritsaenko Z.M., Gritsaenko A.O., Karpenko V.P. Methods biological and chemical studies of plants and soils. K.: ZAT "NICHLVA", 2003. 320 p. (In Ukrainian)
  2. V.V.Volkogon (ed.) Experimental Soil Microbiology. K.: Agricultural science, 2010. 464 p. (In Ukrainian)
  3. Pleshkov A.S., Yagodin B.A. Method for providing plants with mineral elements. Inventors Certificate. 952168 of the USSR, M. Cl3 . А01G 31/02. / No. 2970658/30-15, Appl. 31.07.80, publ. 23.08.82, bull. No. 31. (In Russian)
  4. Aakerant T., Skulberg O.M., Liaaen-Jensen S.A. Comparison of the Carotenoids of Strains of Oscilatiria and Spirullina (Cyanobacteria). Biochemical Systematics and Ecology. 1992 V. 20(8). Р. 761-769.
  5. Algal Culture Media Recipes. http://utex.org/pages/algal-culture-media-recipes, 2015.
  6. Temraleeva A. D., Dronova S. A., Moskalenko S. V., Didovich S.V. Modern methods for isolation, purification, and cultivation of soil cyanobacteria. Microbiology (Microbiologiya). 2016. V.85(4). Р.389-399. DOI: 10.1134/S0026261716040159
Download pdf
up
eISSN: 2221-6197 DOI: 10.31301/2221-6197