Chemistry Department, The University of Texas at El Paso , 500 West University Avenue, El Paso, Texas 79968, United States.
J Agric Food Chem. 2014 Apr 2;62(13):2752-9. doi: 10.1021/jf405476u. Epub 2014 Mar 21.
There is lack of information about the effects of nanoparticles (NPs) on cucumber fruit quality. This study aimed to determine possible impacts on carbohydrates, proteins, mineral nutrients, and antioxidants in the fruit of cucumber plants grown in soil treated with CeO2 and ZnO NPs at 400 and 800 mg/kg. Fourier transform infrared spectroscopy (FTIR) was used to detect changes in functional groups, while ICP-OES and μ-XRF were used to quantify and map the distribution of nutrient elements, respectively. Results showed that none of the ZnO NP concentrations affected sugars; however at 400 mg/kg, CeO2 and ZnO NPs increased starch content. Conversely, CeO2 NPs did not affect starch content but impacted nonreducing sugar content (sucrose). FTIR data showed changes in the fingerprint regions of 1106, 1083, 1153, and 1181, indicating that both NPs altered the carbohydrate pattern. ZnO NPs did not impact protein fractionation; however, CeO2 NPs at 400 mg/kg increased globulin and decreased glutelin. Both CeO2 and ZnO NPs had no impact on flavonoid content, although CeO2 NPs at 800 mg/kg significantly reduced phenolic content. ICP-OES results showed that none of the treatments reduced macronutrients in fruit. In case of micronutrients, all treatments reduced Mo concentration, and at 400 mg/kg, ZnO NPs reduced Cu accumulation. μ-XRF revealed that Cu, Mn, and Zn were mainly accumulated in cucumber seeds. To the best of the authors' knowledge this is the first report on the nutritional quality of cucumber fruit attributed to the impact of CeO2 and ZnO NPs.
关于纳米颗粒(NPs)对黄瓜果实品质的影响,信息匮乏。本研究旨在确定在浓度为 400 和 800mg/kg 的 CeO2 和 ZnO NPs 处理的土壤中种植的黄瓜植株果实中的碳水化合物、蛋白质、矿物质营养元素和抗氧化剂可能受到的影响。傅里叶变换红外光谱(FTIR)用于检测功能基团的变化,而 ICP-OES 和 μ-XRF 分别用于定量和绘制营养元素的分布图。结果表明,ZnO NPs 浓度均未影响糖含量;然而,400mg/kg 时,CeO2 和 ZnO NPs 增加了淀粉含量。相反,CeO2 NPs 不影响淀粉含量,但影响非还原糖含量(蔗糖)。FTIR 数据显示,1106、1083、1153 和 1181 指纹区发生了变化,表明两种 NPs 改变了碳水化合物模式。ZnO NPs 不影响蛋白质分级;然而,400mg/kg 的 CeO2 NPs 增加了球蛋白,减少了谷蛋白。CeO2 和 ZnO NPs 均未影响类黄酮含量,尽管 800mg/kg 的 CeO2 NPs 显著降低了酚类含量。ICP-OES 结果表明,处理均未降低果实中的大量营养元素。对于微量元素,所有处理均降低了 Mo 浓度,400mg/kg 的 ZnO NPs 降低了 Cu 积累。μ-XRF 显示 Cu、Mn 和 Zn 主要积累在黄瓜种子中。据作者所知,这是首次报道 CeO2 和 ZnO NPs 对黄瓜果实营养品质的影响。