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2014 | 23 | 4 |

Tytuł artykułu

Improvements in germination, growth, and metabolic activity of corn seedlings by grain conditioning and root application with Cyanobacteria and microalgae

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Latest publications indicate that Cyanobacteria and green algae can play an important role in symbiosis with other organisms and can produce active compounds (classified as secondary metabolites) that inhibit the growth of pathogenic bacteria and fungi and increase plant growth. Some strains of Cyanobacteria can also assimilate atmospheric nitrogen, which enriches the soil and then is taken up by plants. Due to the lack of information concerning their application in energy crop production, the aim of the presented research was to evaluate the possibility of increasing growth of corn seedlings by grain conditioning and root application with Cyanobacteria and green algae. The obtained results show that monocultures of Microcystis aeruginosa MKR 0105, Anabaena sp. PCC 7120 (Cyanobacteria), and Chlorella sp. (microalgae) significantly increase germination and growth of corn seedlings and also intensify some metabolic processes.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

23

Numer

4

Opis fizyczny

p.1147-1153,fig.,ref.

Twórcy

autor
  • Research Institute of Horticulture, Konstytucji 3 Maja 1/3, 96-100 Skierniewice, Poland
  • Department of Ecophysiology and Plant Development, University of Lodz, Banacha 12/16, 90-237 Lodz, Poland

Bibliografia

  • 1. CHOJNACKA A., ROMANOWSKA-DUDA Z.B., GRZE­SIK M., PSZCZOLKOWSKI W., SAKOWICZ T. Cyanobacteria as a source of bioactive compounds for crop cultivation. In: K. WOŁOWSKI, J. KWANDRANS, A.Z. WOJTAL (Eds), Taxonomy the queen of science - the beau­ty of algae. Book of abstracts of the 29th International Phycological Conference Krakow, pp. 81-82, 2010.
  • 2. MASOJÍDEK J., PRÁSIL O. The development of microal- gal biotechnology in the Czech Republic. J. Ind. Microbiol. Biot. 37, (12), 1307, 2010.
  • 3. NUNNERY J.K., MEVERS E., GERWICK W.H. Biologically active secondary metabolites from marine cyanobacteria. Curr. Opin. Biotech. 21, (6), 787, 2010.
  • 4. PSZCZOLKOWSKI W., ROMANOWSKA-DUDA Z.B., GRZESIK M., CHOJNACKA A., SAKOWICZ T. Usefulnes secondary metabolites of Cyanobacteria in plant biotechnology. In: K. WOŁOWSKI, J. KWANDRANS and A.Z. WOJTAL (Eds), Taxonomy the queen of science - the beauty of algae. Book of abstracts of the 29th International Phycological Conference, Krakow, pp. 146-147, 2010.
  • 5. PSZCZOLKOWSKI W., ROMANOWSKA-DUDA Z., OWCZARCZYK A., GRZESIK M., SAKOWICZ T., CHOJNACKA A. Influence of secondary metabolites from Cyanobacteria on the growth and plant development. Phycological Reports: Current advances in algal taxonomy and its applications: phylogenetic, ecological and applied perspective. Institute of Botany Polish, Academy of Sciences, Kraków, pp. 195-203, 2012.
  • 6. ROMANOWSKA-DUDA Z.B., GRZESIK M., OWCZARCZYK A., MAZUR-MARZEC H. Impact of intra and extracellular substances from Cyanobacteria on the growth and physiological parameters of grapevine (Vitis vinifera). In: 20th International Conference on Plant Growth Substance (IPGSA), Book of abstracts 28.07­02.08.2010. Universitat Rovira i Virgili, Tarragona. Spain, 118, 2010.
  • 7. SHANAN N.T., HIGAZY A.M. Integrated biofertilization management and cyanobacteria application to improve growth and flower quality of Matthiola incana. Research Journal of Agriculture & Biological Sciences. 5, (6), 1162, 2009.
  • 8. FALCH B.S., KONIG G.M., WRIGHT A.D., STICHER O., ANGERHOFER C.K., PEZZUTO J.M., BACHMANN H. Biological activities of cyanobacteria: evaluation of extracts and pure compounds. Planta Med. 61, 321, 1995.
  • 9. KREITLOW S., MUNDT S., LINDEQUIST U. Cyanobacteria - a potential source of new biologically active substances. J. Biotechnol. 70, 61, 1999.
  • 10. BURJA A.M., BANAIGS B., ABOU-MANSOUR E., BURGESS J.G., WRIGHT P.C. Marine cyanobacteri - a prolific source of natural products. Tetrahedron 57, 9347, 2001.
  • 11. MOON S.S., CHEN J.L., MOORE R.E., PATTERSON G.M.L. Calophycin, a fungicidal cyclic decapeptide from the terrestrial blue-green alga Calothrixfusca. J. Org. Chem. 57, 1097, 1992.
  • 12. GRZESIK M., ROMANOWSKA-DUDA Z. B. New tech­nologies of the energy plant production in the predicted cli­mate changed conditions. Bjuleten Djerżawnowo Nikitskowo Bot. Sada. Ukrainska Akademia Agrarnych Nauk 99, 65, 2009.
  • 13. KARTHIKEYANB N., PRASANNAA R., NAINB L., KAUSHIK B.D. Evaluating the potential of plant growth promoting cyanobacteria as inoculants for wheat. Eur. J. Soil Biol. 43, (1), 23, 2007.
  • 14. GORELOVA O.A., Communication of cyanobacteria with plant partners during association formation. Microbiol. 75, (4), 465, 2006.
  • 15. KENNEDY I.R., CHOUDHURY A.T.M.A., KECSKES M.L. Nonsymbiotic bacterial diazotrophs in crop-farming systems: can their potential for plant growth promotion be better exploited? Soil Biol. Biochem. 36, 1229, 2004.
  • 16. ROMANOWSKA-DUDA Z., WOLSKA A., MAŁECKA A. Influence of blue-green algae as nitrogen fertilizer sup­plier in regulation of water status in grapevines under stress conditions. COST 858: Water Transport and Aquaporins in Grapevines, October 20-23, Alcudia, Spain 2004.
  • 17. ROMANOWSKA-DUDA Z. B., GRZESIK M. The use of biometric measurements of plants in the environment mionitoring and biomass production for reneval energy. In: Ekotoksykologia w Ochronie Środowiska, eds. KOL- WZAN B., GRABASA K., PZITS, pp. 327-334, 2008 [In Polish].
  • 18. GORNIK K., GRZESIK M., Effect of Asahi SL on China aster 'Aleksandra' seed yield, germination and some meta­bolic events. Acta Physiol. Plant. 24, (4), 379, 2002.
  • 19. PACEWICZ K., GREGORCZYK A. Porównanie ocen zawartości chlorofilu chlorofilometrami Spad-502 I N- Tester., Zootechnika 269, (9), 41, 2009.
  • 20. KALAJI MH, CARPENTIER R, ALLAKHVERDIEV SI, BOSA K. Fluorescencje parameters as an early indicator of light stress in barley. J Photoch. Photobio. B 112, 1, 2012.
  • 21. KNYPL JS, KABZIŃSKA E. Growth, phosphatase and ribonuclease activity in phosphate deficient Spirodela olig- orrhiza cultures. Biochem. Physiol. Pflanzen. 171, 279, 1977.
  • 22. SPILLER H., GUNASEKARAN M. Ammonia-excreting mutant strain of the cyanobacterium Anabaena variabilis supports growth of wheat. Appl. Microbiol. Biot. 33, (4), 477, 1990.
  • 23. OBREHT Z., KERBY N.W., GANTAR M., ROWELL P. Effects of root-associated N2-fixing cyanobacteria on the growth and nitrogen content of wheat (Triticum vulgare L.) seedlings. Biol. Fert. Soils 15, (1), 68, 1993.
  • 24. GRZESIK M., ROMANOWSKA-DUDA Z.B. The effect of potential climatic changes, Cyanobacteria, Biojodis and Asahi SL on development of the Virginia fanpetals (Sida hermaphrodita) plants. Pamiętnik Pulawski 151, 483, 2009.
  • 25. BADEK B., VAN DUIJN B., GRZESIK M. Effects of water supply methods and incubation on germination of China aster (Callistephus chinensis) seeds. Seed Sci. Technol. 35, (3), 569, 2007.
  • 26. BADEK B., VAN DUIJN B., GRZESIK M. Effects of water supply methods and seed moisture content on germination of China aster (Callistephus chinensis) and tomato (Lycopersicon esculentum Mill.) seeds. Eur. J. Agron. 24, (1), 45, 2006.
  • 27. RANA A., JOSHI M., PRASANNA R., SHIVAY R.S., NAIN L. Biofortification of wheat through inoculation of plant growth promoting rhizobacteria and cyanobacteria. Eur. J. Soil Biol. 50, 118, 2012.
  • 28. NAIN L., RANA A., JOSHI M., JADHAV S.D,. KUMAR D, SHIVAY Y.S., PAUL S., PRASANNA R. Evaluation of synergistic effects of bacterial and cyanobacterial strains as biofertilizers for wheat. Plant Soil 331, 217, 2010.
  • 29. EL MODAFAR C., ELGADDA M., EL BOUTACHFAITIB R., ABOURAICHA E., ZEHHARA N., PETIT E., El ALAOUI-TALIBIA Z., COURTOISB B., COURTOISB J. Induction of natural defence accompanied by salicylic acid- dependant systemic acquired resistance in tomato seedlings in response to bioelicitors isolated from green algae. Sci. Hortic. 138, 55, 2012.
  • 30. SWARNALAKSHMI K., PRASANNA C. R., KUMAR A., PATTNAIK S.C., CHAKRAVARTY K.C, SHIV Y. S.A., SINGH B.R., SAXENA A. K. Evaluating the influence of novel cyanobacterial biofilmed biofertilizers on soil fertility and plant nutrition in wheat. Eur. J. Soil Biol. 55, 107, 2013.

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Bibliografia

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