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Seed priming with silicon nanoparticles improved the biomass and yield while reduced the oxidative stress and cadmium concentration in wheat grains

Environmental Science and Pollution Research · 2019 · Vol. 26(8) · pp. 7579–7588
Afzal HussainMuhammad RizwanShafaqat AliShafaqat Ali
Silicon Effects in AgricultureAluminum toxicity and tolerance in plants and animalsGeochemistry and Elemental AnalysisCadmiumEcotoxicologyBiomass (ecology)Oxidative stressYield (engineering)SiliconNanoparticleAgronomyChemistryPriming (agriculture)

MeSH terms

AntioxidantsBiological TransportCadmiumChlorophyllPhotosynthesisSeedsSiliconSoilSoil PollutantsTriticumOxidative StressPlant RootsBiomassNanoparticlesPlant Development

Funding

  • Higher Education Commision, Pakistan
Citations
410
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100%
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References
Mechanisms of silicon-mediated alleviation of heavy metal toxicity in plants: A review
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Photoperoxidation in isolated chloroplasts
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Potentials of engineered nanoparticles as fertilizers for increasing agronomic productions
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Plant science: the key to preventing slow cadmium poisoning
Trends in Plant Science · 2012 · 1,099 citations
Cadmium stress in rice: toxic effects, tolerance mechanisms, and management: a critical review
Environmental Science and Pollution Research · 2016 · 740 citations
Soil Contamination in China: Current Status and Mitigation Strategies
Environmental Science & Technology · 2014 · 2,056 citations
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Seed priming with silicon nanoparticles improved the biomass and yield while reduced the oxidative stress and cadmium concentration in wheat grains · Scinovex