Uptake and distribution of ceria nanoparticles in cucumber plants

Поглощение и распределение наночастиц диоксида церия в растениях огурца
Zhiyong Zhang, Xiao He, Haifeng Zhang, Yuhui Ma, Peng Zhang, Yayun Ding, Yuliang Zhao
2011-01-01

ceria nanoparticlescucumber plantsnanoparticle distributionnanoparticle uptakeradiotracer method
The presence and release of nanoparticles (NPs) into the environment have important implications for human health and the environment. A critical aspect of the risk assessment of nanoparticles is to understand the interactions of manufactured nanoparticles with plants. In this study, the uptake and distribution characteristics of two types of ceria nanoparticles with sizes of ca. 7 nm and 25 nm in cucumber plants were investigated using a radiotracer method and other techniques. With increasing concentration of the nanoparticles, concentration dependent absorption by the plant roots was noticed, but the majority of the particles only loosely adhered to the root surface. The seedlings treated with 7 nm ceria particles showed significantly higher ceria contents in both roots and shoots than those exposed to 25 nm ceria particles at all test concentrations (2, 20, and 200 mg L(-1)). Only very limited amounts of ceria nanoparticles could be transferred from the roots to shoots because the entry of nanoparticles into the roots was difficult. However, the results of tissue distributions of ceria nanoparticles in the plants and two dimensional distributions of the particles in the leaves imply that once they have entered into the vascular cylinder, ceria nanoparticles could move smoothly to the end of the vascular bundle along with water flow. To the best of our knowledge, this is the first detailed study of uptake and distribution of metal oxide nanoparticles in plants.
1
Cucumber roots showed concentration-dependent absorption of ceria nanoparticles, although most particles remained only loosely attached to root surfaces.
2
Once inside the vascular cylinder, ceria nanoparticles appeared to move along the vascular bundle with water flow toward its distal end.
3
Only limited amounts of ceria nanoparticles moved from roots to shoots because nanoparticle entry into roots was difficult.
4
Seven-nanometer ceria nanoparticles produced significantly higher ceria contents in cucumber roots and shoots than 25-nanometer particles at 2, 20, and 200 mg L−1.
5
The study provides the first detailed investigation of metal oxide nanoparticle uptake and distribution in plants, according to the authors.

Cucumber plants exposed to ceria nanoparticles of approximately 7 nm and 25 nm

Size- and concentration-dependent uptake, root-to-shoot translocation, and tissue distribution of ceria nanoparticles in cucumber plants

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2011-01-01
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Authors
Zhiyong Zhang
Xiao He
Haifeng Zhang
Yuhui Ma
Peng Zhang
Yayun Ding
Yuliang Zhao
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