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Fate and Phytotoxicity of CeO2 Nanoparticles on Lettuce Cultured in the Potting Soil Environment

机译:CeO2纳米颗粒对盆栽土壤环境中生菜的命运和植物毒性

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摘要

Cerium oxide nanoparticles (CeO2 NPs) have been shown to have significant interactions in plants. Previous study reported the specific-species phytotoxicity of CeO2 NPs by lettuce (Lactuca sativa), but their physiological impacts and vivo biotransformation are not yet well understood, especially in relative realistic environment. Butterhead lettuce were germinated and grown in potting soil for 30 days cultivation with treatments of 0, 50, 100, 1000 mg CeO2 NPs per kg soil. Results showed that lettuce in 100 mg·kg-1 treated groups grew significantly faster than others, but significantly increased nitrate content. The lower concentrations treatment had no impact on plant growth, compared with the control. However, the higher concentration treatment significantly deterred plant growth and biomass production. The stress response of lettuce plants, such as Superoxide dismutase (SOD), Peroxidase (POD), Malondialdehyde(MDA) activity was disrupted by 1000 mg·kg-1 CeO2 NPs treatment. In addition, the presence of Ce (III) in the roots of butterhead lettuce explained the reason of CeO2 NPs phytotoxicity. These findings demonstrate CeO2 NPs modification of nutritional quality, antioxidant defense system, the possible transfer into the food chain and biotransformation in vivo.
机译:氧化铈纳米粒子(CeO2 NPs)已显示在植物中具有重要的相互作用。先前的研究报道了莴苣(Lactuca sativa)对CeO2 NPs的特定物种的植物毒性,但它们的生理影响和体内生物转化尚未得到很好的理解,尤其是在相对现实的环境中。 head头生菜发芽并在盆栽土壤中生长30天,每千克土壤分别处理0、50、100、1000 mg CeO2 NP。结果表明,在100 mg·kg -1 处理组中,生菜的生长明显快于其他组,但硝酸盐含量显着增加。与对照相比,较低浓度的处理对植物生长没有影响。然而,较高浓度的处理显着阻碍了植物的生长和生物量的产生。 1000 mg·kg -1 CeO2 NPs处理破坏了莴苣植物的超氧化物歧化酶(SOD),过氧化物酶(POD),丙二醛(MDA)活性。此外,在毛头莴苣的根中存在Ce(III)可以解释CeO2 NPs植物毒性的原因。这些发现表明CeO2 NPs可以改善营养质量,抗氧化防御系统,可能转移到食物链中以及在体内进行生物转化。

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