Polyploidy and zinc oxide nanoparticles alleviated Cd toxicity in rice by modulating oxidative stress and expression levels of sucrose and metal-transporter genes
Author:
Publisher
Elsevier BV
Subject
Health, Toxicology and Mutagenesis,Pollution,Waste Management and Disposal,Environmental Chemistry,Environmental Engineering
Reference84 articles.
1. The transfer of trace metals in the soil-plant-arthropod system;Tibbett;Sci Total Environ,2021
2. Trace metals contamination in groundwater and implications on human health: comprehensive assessment using hydrogeochemical and geostatistical methods;Brindha;Environ Geochem Health,2020
3. Impacts of atmospheric particulate matter pollution on environmental biogeochemistry of trace metals in soil-plant system: a review;Luo;Environ Pollut,2019
4. Cadmium toxicity in plants: impacts and remediation strategies;Haider;Ecotoxicol Environ Saf,2021
5. Cadmium stress in rice: toxic effects, tolerance mechanisms, and management: a critical review;Rizwan;Environ Sci Pollut Res,2016
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