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High-Temperature Stress Alleviation by Selenium Nanoparticle Treatment in Grain Sorghum

ACS Omega · 2018 · Vol. 3(3) · pp. 2479–2491
M. DjanaguiramanN. BellirajStefan H. BossmannP. V. Vara Prasad

Abstract

The role of selenium nanoparticles (Se-NPs) in the mitigation of high-temperature (HT) stress in crops is not known. The uptake, toxicity and physiological and biological effects of Se-NPs under HT were investigated in grain sorghum [<i>Sorghum bicolor</i> (L.) Moench]. Se-NPs of size 10-40 nm were synthesized and characterized to indicate nanocrystalline structure. A toxicity assay showed that Se-NPs concentration inducing 50% cell mortality (TC50) was 275 mg L<sup>-1</sup>. Translocation study indicated that Se-NPs can move from root to shoot of sorghum plants. Foliar spray of 10 mg L<sup>-1</sup> Se-NPs during the booting stage of sorghum grown under HT stress stimulated the antioxidant defense system by enhancing antioxidant enzymes activity. Furthermore, it decreased the concentration of signature oxidants. Se-NPs facilitated higher levels of unsaturated phospholipids. Se-NPs under HT stress improved the pollen germination percentage, leading to a significantly increased seed yield. The increased antioxidant enzyme activity and decreased content of oxidants in the presence of Se-NPs were greater under HT (38/28 °C) than under optimum temperature conditions (32/22 °C). In conclusion, Se-NPs can protect sorghum plants by enhanced antioxidative defense system under HT stress.

Selenium in Biological SystemsPlant responses to elevated CO2Bee Products Chemical AnalysisSorghumAntioxidantChemistryGerminationSeleniumShootToxicitySorghum bicolorEnzymeHorticulture

Funding

  • Indian Council of Agricultural Research
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