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Original Articles

Comparative Uptake and Impact of TiO2 Nanoparticles in Wheat and Rapeseed

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Pages 722-734 | Published online: 12 Jul 2012
 

Abstract

Up to 2 million tons per year of titanium dioxide (TiO2) nanoparticles (NP) are produced worldwide. This extensive production is postulated to result in release into the environment with subsequent contamination of soils and plants; however, few studies have examined TiO2-NP uptake and impact on plants. In this study, wheat and rapeseed plantlets were exposed to 14 nm or 25 nm anatase TiO2-NP in hydroponics conditions, either through root or leaf exposure. Microparticle-induced x-ray emission (μPIXE) coupled with Rutherford backscattering spectroscopy (RBS) was used to quantify absorbed titanium (Ti). Micro x-ray fluorescence (μXRF) based on synchrotron radiation was used to evaluate Ti distribution in roots and leaves. Our results show that both TiO2-NP are accumulated in these plantlets upon root exposure and that Ti content is higher in rapeseed than wheat. Ti distribution in root cross sections depended on NP agglomeration state. NP are also accumulated in plantlets upon leaf exposure. Finally, it was found that TiO2-NP exposure induced increased root elongation but did not affect germination, evapotranspiration, and plant biomass. Taken together, these results confirm that TiO2-NP may be accumulated in plant crops but may only moderately impact plant development.

Acknowledgments

This study was funded by the region Ile de France through the framework C'nano Ile de France. C. Larue was supported by a fellowship from the ADEME and CEA, and this work was performed within the framework of the iCEINT research consortium. The authors thank the European Synchrotron Radiation Facility and SOLEIL for provision of synchrotron radiation facilities at ID21 and LUCIA.

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