Accumulation of magnetic nanoparticles in plants grown on soils of Apsheron peninsula

Magnetic nanoparticles in five plant species growing on the Apsheron peninsula have been detected by the EPR method. The EPR spectra of these nanoparticles proved to be similar to those of synthesized magnetic nanoparticles. The result demonstrated that plants are capable of absorbing magnetic nanop...

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Veröffentlicht in:Biophysics (Oxford) 2011-04, Vol.56 (2), p.316-322
Hauptverfasser: Khalilov, R. I., Nasibova, A. N., Serezhenkov, V. A., Ramazanov, M. A., Kerimov, M. K., Garibov, A. A., Vanin, A. F.
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Sprache:eng
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Zusammenfassung:Magnetic nanoparticles in five plant species growing on the Apsheron peninsula have been detected by the EPR method. The EPR spectra of these nanoparticles proved to be similar to those of synthesized magnetic nanoparticles. The result demonstrated that plants are capable of absorbing magnetic nanoparticles from the soil. The accumulation of nanoparticles in plants is confirmed by the presence of a broad EPR signal whose maximum position of the low-field component changes from g = 2.38 and half-width of the signal of 32 mT at room temperature to g = 2.71 and 50–55 mT at 80 K. The intensity of the broad EPR signal for plants grown in radioactively contaminated areas (170‐220 μR/h) was substantially lower compared with plants grown on clean soil. The parameters of the broad EPR signal and its dependence on the temperature of recording were identical with those for synthetic magnetic nanoparticles. The photosynthetic activity and changes in the genome of irradiated plants by the analysis of PCR products were studied.
ISSN:0006-3509
1555-6654
DOI:10.1134/S000635091102014X