TiO2 nanoparticles alter nutrients acquisition, growth, biomacromolecules, oil composition and modulate antioxidant defense system in Mentha arvensis L.
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Elsevier BV
Reference101 articles.
1. Efficacy of titanium dioxide nanoparticles in modulating photosynthesis, peltate glandular trichomes and essential oil production and quality in Mentha piperita L;Ahmad;Curr. Plant. Biol.,2018
2. Mitochondrial and chromosomal damage induced by oxidative stress in Zn2+ ions, ZnO-Bulk and ZnO-NPs treated Allium cepa roots;Ahmed;Sci. Rep.,2017
3. Differential responses of maize (Zea mays) at the physiological, biomolecular, and nutrient levels when cultivated in the presence of nano or bulk ZnO or CuO or Zn2+ or Cu2+ ions;Ahmed;J. Hazard. Mater.,2021
4. Estimation of total phenolic content and other oxidation substrates in plant tissues using folin–ciocalteu reagent;Ainsworth;Nat. Protoc.,2007
5. Germination and early plant development of ten plant species exposed to titanium dioxide and cerium oxide nanoparticles;Andersen;Environ. Toxicol. Chem.,2016
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