Title of article :
Accumulation, translocation and impact of TiO2 nanoparticles in wheat (Triticum aestivum spp.): Influence of diameter and crystal phase Original Research Article
Author/Authors :
Camille Larue، نويسنده , , Julien Laurette، نويسنده , , Nathalie Herlin-Boime، نويسنده , , Hicham Khodja، نويسنده , , Barbara Fayard، نويسنده , , Anne-Marie Flank، نويسنده , , François Brisset، نويسنده , , Marie Carriere، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2012
Abstract :
Intensive production of TiO2 nanoparticles (TiO2-NPs) would lead to their release in the environment. Their ecotoxicological impact is still poorly documented, while their use in commercial goods is constantly increasing. In this study we compare root accumulation and root-to-shoot translocation in wheat of anatase and rutile TiO2-NPs with diameters ranging from 14 nm to 655 nm, prepared in water. NP distribution in plant tissues was mapped by synchrotron-radiation micro-X-ray fluorescence, observed by transmission electron microscopy and quantified in the different compartments of plant roots by micro-particle-induced X-ray emission. Our results provide evidence that the smallest TiO2-NPs accumulate in roots and distribute through whole plant tissues without dissolution or crystal phase modification. We suggest a threshold diameter, 140 nm, above which NPs are no longer accumulated in wheat roots, as well as a threshold diameter, 36 nm, above which NPs are accumulated in wheat root parenchyma but do not reach the stele and consequently do not translocate to the shoot. This accumulation does not impact wheat seed germination, biomass and transpiration. It does not induce any modification of photosynthesis nor induce oxidative stress. However exposure of wheat plantlets to the smallest NPs during the first stages of development causes an increase of root elongation. Collectively, these data suggest that only the smallest TiO2-NPs may be accumulated in wheat plants, although in limited amounts and that their impact is moderate.
Keywords :
Titanium dioxide nanoparticle , Ecotoxicity , Plant , Wheat , X-ray absorption spectroscopy , X-ray fluorescence microscopy
Journal title :
Science of the Total Environment
Journal title :
Science of the Total Environment