Biotransformation of Ceria Nanoparticles in Cucumber Plants

Биотрансформация наночастиц диоксида церия в растениях огурца
Peng Zhang, Yuhui Ma, Zhiyong Zhang, Xiao He, Jing Zhang, Zhi Guo, Renzhong Tai, Yuliang Zhao, Zhifang Chai
2012-10-25

BiotransformationCePO4 formationCeria nanoparticlesCucumber plantsXANES spectroscopy
Biotransformation is a critical factor that may modify the toxicity, behavior, and fate of engineered nanoparticles in the environment. CeO(2) nanoparticles (NPs) are generally recognized as stable under environmental and biological conditions. The present study aims to investigate the biotransformation of CeO(2) NPs in plant systems. Transmission electron microscopy (TEM) images show needlelike clusters on the epidermis and in the intercellular spaces of cucumber roots after a treatment with 2000 mg/L CeO(2) NPs for 21 days. By using a soft X-ray scanning transmission microscopy (STXM) technique, the needlelike clusters were verified to be CePO(4). Near edge X-ray absorption fine structure (XANES) spectra show that Ce presented in the roots as CeO(2) and CePO(4) while in the shoots as CeO(2) and cerium carboxylates. Simulated studies indicate that reducing substances (e.g., ascorbic acids) played a key role in the transformation process and organic acids (e.g., citric acids) can promote particle dissolution. We speculate that CeO(2) NPs were first absorbed on the root surfaces and partially dissolved with the assistance of the organic acids and reducing substances excreted by the roots. The released Ce(III) ions were precipitated on the root surfaces and in intercellular spaces with phosphate, or form complexes with carboxyl compounds during translocation to the shoots. To the best of our knowledge, this is the first report confirming the biotransformation and in-depth exploring the translocation process of CeO(2) NPs in plants.
1
After 21 days of exposure to 2000 mg/L CeO2 nanoparticles, needlelike CePO4 clusters formed on root epidermis and within intercellular spaces.
2
Ceria nanoparticles underwent biotransformation in cucumber plants, challenging their presumed stability under biological conditions.
3
Root cerium occurred as CeO2 and CePO4, whereas shoot cerium occurred as CeO2 and cerium carboxylates.
4
Simulations indicate that root-excreted reducing substances promote transformation, while organic acids enhance nanoparticle dissolution.
5
The proposed pathway involves partial root-surface dissolution, followed by Ce(III) precipitation with phosphate in roots or complexation with carboxyl compounds during shoot translocation.

Ceria (CeO2) nanoparticles in cucumber plants

Biotransformation, dissolution, and translocation of CeO2 nanoparticles, including their conversion to CePO4 and cerium carboxylates

Publication Details
Publication Date
2012-10-25
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Peng Zhang
Yuhui Ma
Zhiyong Zhang
Xiao He
Jing Zhang
Zhi Guo
Renzhong Tai
Yuliang Zhao
Zhifang Chai
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%