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2009 | 18 | 4 |

Tytuł artykułu

Pea [Pisum sativum, L.] and lentil [Lens culinaris, Medik] growth stimulation due to exposure to 125 and 250 mT stationary fields

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Pea and lentil seeds were exposed to 125, 250 mT magnetic field. Total weight, stem weight, total and stem length were measured after 7 and 14 days of exposure. Growth parameters of these seeds were increased; consequently, seedlings from seeds magnetically treated grew taller and heavier than controls. These differences were highly significant for 24 hour (D5, D11) and chronic exposure (D6, D12). An increase in both weight and length of pea and lentil plants was observed with respect to control groups, yielding significant differences in the 14-day group (p<0.001) for every parameter. Increased root development was also observed.

Wydawca

-

Rocznik

Tom

18

Numer

4

Opis fizyczny

p.657-663,fig.,ref.

Twórcy

autor
  • Physics and Mechanics Department, College of Agricultural Engineering, Technical University of Madrid, Ciudad Universitaria s/n, 28040 Madrid, Spain
autor
  • Physics and Mechanics Department, College of Agricultural Engineering, Technical University of Madrid, Ciudad Universitaria s/n, 28040 Madrid, Spain
autor
  • Spanish Office of Vegetable Varieties, Environmental, Rural and Marine Ministry, Spain
  • Physics and Mechanics Department, College of Agricultural Engineering, Technical University of Madrid, Ciudad Universitaria s/n, 28040 Madrid, Spain
autor
  • Physics and Mechanics Department, College of Agricultural Engineering, Technical University of Madrid, Ciudad Universitaria s/n, 28040 Madrid, Spain

Bibliografia

  • 1. MARTÍNEZ E., CARBONELL M.V., AMAYA J.M. A static magnetic field of 125mT stimulates the initial growth stages of barley (Hordeum vulgare, L.). Electro-and magnetobiology 19, (3), 271, 2000.
  • 2. CARBONELL M. V., MARTÍNEZ E., FLÓREZ M., MAQUEDA R., LÓPEZ-PINTOR A., AMAYA J.M. Magnetic field treatments improve germination and seedling growth in Festuca arundinacea Schreb. and Lolium perenne L. Seed Science and Technology, 36, 31, 2008.
  • 3. PIETRUSZEWSKI S. Effect of magnetic seed treatment on yields of wheat. Seed Science and Technology, 21, 621, 1993.
  • 4. PIETRUSZWESKI S. Effects of magnetic biostimulation of wheat seeds on germination, yield and proteins. Int. Agrophysics 10, (1), 51, 1996.
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  • 9. AKOYUNOGLOU G. Effect of a magnetic field on carboxydimutase. Nature 4931, 452, 1964.
  • 10. KAVI P.S. The effect of magnetic treatment of soybean seed on its moisture absorbing capacity. Science and Culture 43, 405, 1977.
  • 11. KAVI P.S. The effect of non-homogeneous gradient magnetic field susceptibility values in situ ragi seed material. Mysore Journal of Agricultural Sciences, 17, 121, 1983.
  • 12. PALOV I., STEFANO S., SIRAKOV K. Possibilities for pre-sowing electromagnetic treatment of cotton seeds. Agricultural Engineering 31, 3, 1994.
  • 13. NEDIALKOV N., NENOV S., PARMAKOV D. Pre-sowing treatment of seeds by magnetic field. Zemes Ukio Inzinerija, Mokslo Darbai 27, 141, 1996.
  • 14. YANO A., HIDAKA E., FUJIWARA K., IIMOTO M. Induction of primary root curvature in radish seedlings in a static magnetic field. Biolelectromagnetics, 22, 194, 2001.
  • 15. YINAN L., YUAN L., YONGQUING Y., CHUNYANG, L. Effect of seed pre-treatment by magnetic field on the sensitivity of cucumber (Cucumis sativus) seedlings to ultraviolet-B radiation. Environmental and Experimental Botany 54, 286, 2005.
  • 16. DE SOUZA A., GARCIA D., SUEIRO L., GILART E., PORRAS E., LICEA L. Pre-sowing magnetic treatment of tomato seeds increase the growth and yield of plants. Biolelectromagnetics, 27, 247, 2006.
  • 17. AMAYA J.M., CARBONELL M.V., MARTÍNEZ, E., RAYA, A. Incidencia de campos estacionarios en la germinacion y crecimiento de semillas. Agricultura, 773, 1049, 1996.
  • 18. NEGISHI Y., HASHIMOTO A., TSUSHIMA M., DOBROTA C., YAMASHITA M., NAKAMURA T. Growth of pea epicotyl in low magnetic field implication for space research. Advances in Space Research 23, (12), 2029, 1999.
  • 19. CARBONELL M.V., MARTÍNEZ E., AMAYA J.M. Stimulation of germination in rice (Oryza sativa, L.) by a static magnetic field. Electro-and Magnetobiology 19, (1), 121, 2000.
  • 20. MARTÍNEZ E., CARBONELL M.V., FLÓREZ M. Magnetic biostimulation of initial growth stages of wheat (Triticum aestivum, L.). Electromagnetic Biology and Medicine 21, (1), 43, 2002.
  • 21. ALADJADJIYAN A. Study of the influence of magnetic field on some biological characteristics of Zea mais. J. Central European Agriculture 3, (2), 89, 2002.
  • 22. ALADJADJIYAN A., YLIEVA T. Influence of stationary magnetic field on the first stages of the development of tobacco seeds (Nicotiana tabacum, L.). J. Central European Agriculture 4, (2), 131, 2003.
  • 23. PODLESNI J., PIETRUSZEWSKI S., PODLESNA A. Efficiency of the magnetic treatment of broad bean seeds cultivated under experimental plot conditions. International Agrophysics, 18, 65, 2004.
  • 24. STANGE B.C., ROWLAND R.E., RAPLEY B.I.A., PODD J.V. ELF magnetic fields increase amino acid uptake into Vicia faba L. roots and alter ion movement across the plasma membrane. Biolelectromagnetics, 2, 347, 2002.
  • 25. RACUCIU M., CREANGIA D.E. Biological effects of low electromagnetic field in Curcubita pepo. Proceedings of the Third Moscow International Symposium on Magnetism, 2005.
  • 26. FLÓREZ M., CARBONELL M.V., MARTÍNEZ, E. Early sprouting and first stages of growth of rice seeds exposed to a magnetic field. Electromagnetobiology and Medicine 23, (2), 167, 2004.
  • 27. FLÓREZ M., CARBONELL M.V., MARTÍNEZ E. Exposure of maize seeds to stationary magnetic field: effects on germination and early growth. Environmental and Experimental Botany, 59, 68, 2007.
  • 28. RACUCIU M., CALUGARU G.H., CREANGIA D.E. Static magnetic field influence on some plant growth. Rom. Journal Physics, 1, 241, 2006.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-c60eb345-90d6-4055-8f88-2dd2635c0171
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