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Effect of Different Forms of Selenium on the Physiological Response and the Cadmium Uptake by Rice under Cadmium Stress

Datos Bibliográficos

ID15467331
AutoresHaizhao Xu (Guangxi University), Jinpeng Yan (Guangxi University), Yan Qin (0000-0003-4729-6673, Guangxi University), Jingmao Xu (Guangxi University), M J I Shohag (0000-0002-8799-4401, Gopalganj Science and Technology University), YanYan Wei (0000-0002-8218-1954, Guangxi University, autor de correspondencia), Minghua Gu (Guangxi University, autor de correspondencia)
Año2020
Volumen17
Número19
Páginas6991-6991
Fecha de publicación2020-09-24
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaInternational Journal of Environmental Research and Public Health (JOURNAL)
Identificadores de la revistaISSN: 1661-7827 • E-ISSN: 1660-4601
EditorialMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph17196991
PMID32987814
OpenAlexW3088111321
IdiomaEN
Referencias citadas41

Cadmium (Cd) is a pollutant toxic to plants and a potential threat to human health. Selenium (Se), though not essential for plants, has beneficial effects on plants under abiotic stress. A hydroponic experiment was conducted to investigate the impact of different forms of Se (Nano-Se, selenite, selenate, and SeMet) on accumulation, subcellular distribution, and chemical forms of Cd, as well as oxidative stress in rice seedlings. Cd (20 μmol·L -1 ) treatment significantly decreased biomass accumulation and chlorophyll content. The application of all Se forms, except selenate, mitigated the adverse effects of Cd on growth and chlorophyll content. The application of selenite, Nano-Se, and SeMet decreased root and shoot Cd concentrations as well as root-to-shoot Cd translocation in rice seedlings. Selenate application decreased shoot Cd concentration and root-to-shoot Cd translocation with no effect on root Cd concentration. Accordingly, Se increased the sequestration of Cd in the cell wall and vacuoles and decreased the active chemical form of Cd in rice seedlings. SeMet was the most effective supplement that decreased Cd concentration and enhanced Se concentration in the roots and shoots of rice seedlings. All forms of Se further enhanced catalase (CAT) and glutathione peroxidase (GSH-Px) activities and inhibited MDA accumulation. To conclude, Se influenced Cd accumulation and translocation in rice seedlings by altering the subcellular distribution, chemical forms, and antioxidant defense system under Cd stress. These effects were highly significant with SeMet treatment, probably due to better absorption and utilization by the plant

Antioxidant · Biology · Botany · Cadmium · Catalase · Chlorophyll · Glutathione · Selenate · Selenium · Shoot · Chemistry · Heavy Metal Exposure and Toxicity · Heavy metals in environment · Selenium in Biological Systems · Biochemistry · Horticulture

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