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Egyptian Journal of Botany
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Awad, S., Hathout, T., El khallal, S., Farroh, K. (2023). Pleotropic Roles of Biosynthesized Cerium Oxide Nanoparticles on Morphological, Physiological and Molecular Aspects on Brassica napus. Egyptian Journal of Botany, 63(3), 765-786. doi: 10.21608/ejbo.2023.155777.2097
Salma M. Awad; Tahani A. Hathout; Samia M. El khallal; Khaled Y. Farroh. "Pleotropic Roles of Biosynthesized Cerium Oxide Nanoparticles on Morphological, Physiological and Molecular Aspects on Brassica napus". Egyptian Journal of Botany, 63, 3, 2023, 765-786. doi: 10.21608/ejbo.2023.155777.2097
Awad, S., Hathout, T., El khallal, S., Farroh, K. (2023). 'Pleotropic Roles of Biosynthesized Cerium Oxide Nanoparticles on Morphological, Physiological and Molecular Aspects on Brassica napus', Egyptian Journal of Botany, 63(3), pp. 765-786. doi: 10.21608/ejbo.2023.155777.2097
Awad, S., Hathout, T., El khallal, S., Farroh, K. Pleotropic Roles of Biosynthesized Cerium Oxide Nanoparticles on Morphological, Physiological and Molecular Aspects on Brassica napus. Egyptian Journal of Botany, 2023; 63(3): 765-786. doi: 10.21608/ejbo.2023.155777.2097

Pleotropic Roles of Biosynthesized Cerium Oxide Nanoparticles on Morphological, Physiological and Molecular Aspects on Brassica napus

Article 6, Volume 63, Issue 3, September 2023, Page 765-786  XML PDF (1.82 MB)
Document Type: Regular issue (Original Article)
DOI: 10.21608/ejbo.2023.155777.2097
Cited by Scopus (1)
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Authors
Salma M. Awad email orcid 1; Tahani A. Hathoutorcid 1; Samia M. El khallalorcid 1; Khaled Y. Farrohorcid 2
1Botany Department, Faculty of Women for Arts, Science and Education, Ain Shams University, Cairo 11757, Egypt
2Nanotechnology and Advanced Material Central lab (NAMCL), Agricultural Research Center, Giza, Egypt
Abstract
The aim of this study was to determine how cerium dioxide nanoparticles (CeO₂ NPs) affect the growth and physiology of Brassica napus plants. CeO2 NPs were biosynthesized using Aloe Vera extract and characterized using a UV-visible spectrophotometer, X-ray diffraction, Fourier transform infrared spectroscopy, Zeta potential, and particle size (DLS) as well as transmission electron microscopy. Following foliar treatment with 250, 500, and 1000 ppm of CeO2 NPs, the growth, and metabolism of Brassica napus were evaluated. Exposure to 500 ppm CeO2 NPs significantly enhanced morphological characteristics, antioxidant enzymes, phenol content, tocopherol, and chlorophyll content as well as carotenoid levels in B. napus. Assessment of oxidative stress in B. napus leaves treated with 500 CeO2NPs showed high levels of super oxide anion radical (o₂·¯) and hydrogen peroxide and low content of MDA, as well as inhibition in the activity of Lipoxygenase enzyme. Histochemical staining of B. napus leaves using nitro blue tetrazolium confirms the role of spraying of 500 ppm of CeO2 NPs in the accumulation of oxidative molecules in leaves. Gene expression assay for SOD and MT highlighted the role of CeO2 NPs in the regulation of stress-related genes in tested plants. The changes in ultrastructure of Brassica napus leaves treated or untreated with 500 ppm of CeO2 NPs for two weeks were examined using a transmission electron microscope. (we highly appreciate this reviewers precise comment)
Keywords
Brassica napus; Cerium dioxide nanoparticles; Morphology; Oxidative stress
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