首页> 外文学位 >Uptake of copper and cerium by alfalfa, lettuce and cucumber exposed to nCeO2 and nCuO through the foliage or the roots: Impacts on food quality, physiological and agronomical parameters.
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Uptake of copper and cerium by alfalfa, lettuce and cucumber exposed to nCeO2 and nCuO through the foliage or the roots: Impacts on food quality, physiological and agronomical parameters.

机译:苜蓿,生菜和黄瓜通过叶面或根部接触nCeO2和nCuO所吸收的铜和铈:对食品质量,生理和农艺参数的影响。

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摘要

Nanotechnology is increasingly attracting attention not only for its variety of applications in modern life, but for the potential negative effects that nanomaterials (NMs) can cause in the environment and human health. Studies have shown varied effects of engineered nanoparticles (ENPs) on plants; however, most of these studies focused on the interaction of NPs with plants at root level. The increasing production and use of NPs have also increased the atmospheric amounts of NPs, which could be taken up by plants through their leaves. Cucumbers (Cucumis sativus L.) are broad leaf plants commonly grown both commercially and in home vegetable gardens that can be easily impacted by atmospheric NPs. However, there is limited information about the potential effects of these atmospheric NPs on cucumber. This research was aimed to determine (I) the possible uptake and translocation of cerium (Ce) by cucumber plants exposed to nCeO 2 (cerium dioxide nanoparticles, nanoceria) through the foliage, (II) the impacts of the NPs on physiological parameters of the plants and the effects on the nutritional value and quality of the fruits, and (III) the effects of seven copper compounds/nanoparticles applied to the growth medium of lettuce (Lactuca sativa) and alfalfa (Medicago sativa). For aim I, 15 day-old hydroponically grown cucumber plants were exposed to nCeO2, either as powder at 0.98 and 2.94 g/m3 or suspensions at 20, 40, 80, 160, 320 mg/l. Ce uptake was analyzed by using inductively coupled plasma-optical emission spectroscopy (ICP-OES) and transmission electron microscope (TEM). The activity of three stress enzymes was measured by UV/Vis. Ce was detected in all cucumber tissues and TEM images showed the presence of Ce in roots. Results suggested nCeO2 penetrated plants through leaves and moved to other plant parts. The biochemical assays showed nCeO2 also modified stress enzyme activities. For aim II, 15 day-old soil grown cucumber plants were foliar treated, separately, with 50, 100, 200 mg/L of nCeO2, nCuO and the respective bulk material suspensions. Photosynthetic rate (Pn), stomatal conductance (gs), and transpiration (E) of cucumber leaves were measured with a portable gas exchange system. Nutritional elements and Ce/Cu uptake were determined by ICP-OES. Quality of cucumber fruits was evaluated after harvest. Results showed that cucumber absorbed Ce and Cu through foliar applied nCeO2 and nCuO and translocate them to new leaves and fruits. Photosynthetic and transpiration rates were only affected in new leaves. None of the treatment significantly affected cucumber, yield, length, and diameter of fruits. However, both nCeO2 and nCuO significantly reduced the firmness of the fruit. Mineral element determination in fruit showed that Zn decreased by 25% with 200 mg/L of both nCeO2 and bulk CeO 2 and in fruit Mo decreased by 51% and 44% with both nCuO and bulk CuO at 200 mg/L, respectively. For the aim III, 15 day-old hydroponically grown lettuce and alfalfa were exposed to 0, 5, 10, and 20 mg/L nCu, bulk Cu, nCuO, bulk CuO, Cu(OH)2 (CuPRO 2005, Kocide 3000), and CuCl2. The concentration of Cu, macro and microelements in plants were measured by using ICP-OES. The size of the plants and the activity of catalase and ascorbate peroxidase were also determined. Results showed that all Cu NPs/compounds reduced the root length by 49% in both plant species. Under all treatments, Cu, P, and S were increased (>100%, >50%, and >20%, respectively) in alfalfa shoots; while P and Fe were decreased (>50% and >50%, respectively) in lettuce shoot. In addition, catalase activity was reduced in alfalfa (root and shoot) and ascorbate peroxidase activity was increased in roots of both plant species. Our findings show that increasing concentration of atmospheric nCeO2 can affect the nutritional value of crop plants with unknown consequences for the food chain. In addition Cu NPs/compounds could impact the growth of plants and altered the quality of crops as well. These results will help to understand the eco-toxicity of NPs in food crops.
机译:纳米技术不仅因为其在现代生活中的各种用途,而且由于纳米材料(NMs)可能对环境和人类健康造成的潜在负面影响,越来越引起人们的关注。研究表明,工程化纳米颗粒(ENP)对植物的影响各不相同。然而,这些研究大多集中在NP与植物在根水平上的相互作用。 NP产量和使用量的增加也增加了NP的大气含量,植物可通过其叶片吸收这些污染物。黄瓜(Cucumis sativus L.)是通常在商业和家庭菜园中种植的阔叶植物,很容易受到大气NP的影响。但是,关于这些大气NP对黄瓜的潜在影响的信息有限。这项研究的目的是确定(I)暴露于nCeO 2(二氧化铈纳米颗粒,纳米氧化铈)的黄瓜植物通过叶吸收和迁移铈(Ce)的可能性,(II)NP对植物的生理参数的影响。植物及其对水果营养价值和品质的影响,以及(III)在生菜(Lactuca sativa)和苜蓿(Medicago sativa)的生长培养基上施用7种铜化合物/纳米颗粒的影响。对于目标I,将15天大的水培黄瓜植株暴露于nCeO2中,以粉末形式分别以0.98和2.94 g / m3的浓度或以20、40、80、160、320 mg / l的悬浮液的浓度进行暴露。通过使用电感耦合等离子体发射光谱法(ICP-OES)和透射电子显微镜(TEM)分析Ce的吸收。通过UV / Vis测量三种应激酶的活性。在所有黄瓜组织中均检测到铈,并且TEM图像显示根中存在铈。结果表明,nCeO2通过叶子穿透植物并移至其他植物部位。生化分析表明,nCeO2还修饰了应激酶的活性。对于目标II,分别用50、100、200 mg / L的nCeO2,nCuO和相应的散装物料悬浮液对15天大的土壤黄瓜植株进行叶面处理。用便携式气体交换系统测量黄瓜叶片的光合速率(Pn),气孔导度(gs)和蒸腾量(E)。营养成分和Ce / Cu摄入量通过ICP-OES测定。收获后评估黄瓜果实的质量。结果表明,黄瓜通过叶面施用nCeO2和nCuO吸收了Ce和Cu,并使其易位到新的叶子和果实上。光合和蒸腾速率仅在新叶中受到影响。没有一种处理能显着影响黄瓜,产量,长度和直径。但是,nCeO2和nCuO都大大降低了水果的硬度。水果中矿物质元素的测定表明,200 mg / L的nCeO2和块状CeO 2的锌含量分别降低25%,nCuO和大量的CuO含量分别为200 mg / L时,水果Mo的含量分别降低51%和44%。对于目标III,将15天的水培生菜和苜蓿暴露于0、5、10和20 mg / L nCu,块状Cu,nCuO,块状CuO,Cu(OH)2(CuPRO 2005,Kocide 3000)和CuCl2。使用ICP-OES测定植物中的铜,大型元素和微量元素的浓度。还确定了植物的大小以及过氧化氢酶和抗坏血酸过氧化物酶的活性。结果表明,两种植物中所有Cu NPs /化合物的根长均降低了49%。在所有处理下,苜蓿芽中的Cu,P和S均增加(分别> 100%,> 50%和> 20%)。生菜芽中磷和铁减少(分别> 50%和> 50%)。此外,苜蓿(根和枝)的过氧化氢酶活性降低,两种植物的根中抗坏血酸过氧化物酶活性均升高。我们的发现表明,大气中nCeO2浓度的增加会影响农作物的营养价值,对食物链的影响未知。此外,铜纳米颗粒/化合物还可能影响植物的生长并改变农作物的质量。这些结果将有助于了解NPs在粮食作物中的生态毒性。

著录项

  • 作者

    Hong, Jie.;

  • 作者单位

    The University of Texas at El Paso.;

  • 授予单位 The University of Texas at El Paso.;
  • 学科 Environmental science.;Nanotechnology.;Food science.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 97 p.
  • 总页数 97
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 语言学;
  • 关键词

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