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Effects of Silver Nanoparticles on Radish Sprouts: Root Growth Reduction and Modifications in the Nutritional Value

机译:银纳米颗粒对萝卜芽苗的影响:根生长的减少和营养价值的修改

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摘要

Reports indicate that silver nanoparticles (nAg) are toxic to vegetation, but little is known about their effects in crop plants. This study examines the impacts of nAg on the physiology and nutritional quality of radish (Raphanus sativus) sprouts. Seeds were germinated and grown for 5 days in nAg suspensions at 0, 125, 250, and 500 mg/L. Seed germination and seedling growth were evaluated with traditional methodologies; the uptake of Ag and nutrients was quantified by inductively coupled plasma-optical emission spectroscopy (ICP-OES) and changes in macromolecules were analyzed by infrared (IR) spectroscopy. None of the nAg concentrations reduced seed germination. However, the water content (% of the total weight) was reduced by 1.62, 1.65, and 2.54% with exposure to 125, 250, and 500 mg/L, respectively, compared with the control. At 500 mg/L, the root and shoot lengths were reduced by 47.7 and 40%, with respect to the control. The seedlings exposed to 500 mg/L had 901 ± 150 mg Ag/kg dry wt and significantly less Ca, Mg, B, Cu, Mn, and Zn, compared with the control. The infrared spectroscopy analysis showed changes in the bands corresponding to lipids (3000–2800 cm-1), proteins (1550–1530 cm-1), and structural components of plant cells such as lignin, pectin, and cellulose. These results suggest that nAg could significantly affect the growth, nutrient content and macromolecule conformation in radish sprouts, with unknown consequences for human health.
机译:报告表明,银纳米颗粒(nAg)对植物有毒,但对其在农作物中的作用知之甚少。这项研究探讨了nAg对萝卜(Raphanus sativus)芽的生理和营养品质的影响。使种子发芽,并在0、125、250和500 mg / L的nAg悬浮液中生长5天。用传统方法评价种子的发芽和幼苗生长;通过电感耦合等离子体发射光谱法(ICP-OES)对银和养分的吸收进行定量,并通过红外光谱法分析大分子的变化。 nAg浓度均未减少种子发芽。但是,与对照相比,暴露于125、250和500 mg / L的水含量(占总重量的百分比)分别降低了1.62、1.65和2.54%。与对照相比,在500 mg / L时,根和茎的长度分别减少了47.7和40%。与对照相比,暴露于500 mg / L的幼苗的干重为901±150 mg Ag / kg,且钙,镁,硼,铜,锰和锌的含量明显减少。红外光谱分析显示对应于脂质(3000–2800 cm -1 ),蛋白质(1550–1530 cm -1 )和植物结构成分的条带发生了变化。木质素,果胶和纤维素等细胞。这些结果表明,nAg可以显着影响萝卜芽的生长,营养成分和大分子构象,对人体健康的影响未知。

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