National Institute for Research and Development of Isotopic and Molecular Technologies, 67-103 Donat, 400293 Cluj-Napoca, Romania.
Frank Laboratory of Neutron Physics, Joint Institute for Nuclear Research, 6 Joliot-Curie, 141980 Dubna, Russia.
Int J Environ Res Public Health. 2021 Jun 23;18(13):6739. doi: 10.3390/ijerph18136739.
In the present study, the effects of copper oxide nanoparticles (CuO NPs) on bioactive compounds, the ultrastructural modifications which can occur, and elemental content of wheat were investigated. Changes in the wheat plants grown in presence or absence of CuO NPs were estimated. The application of CuO NPs decreased the amounts of chlorophylls and carotenoids and increased the amounts of polyphenols and antioxidant capacity. Ultrastructural analysis showed that the plants treated with CuO NPs were negatively affected. Soil amending completely inhibited the accumulation of seventeen elements, while K, Br, Al, and Zn were accumulated and Cl, Na, Ba, and Sr content decreased in wheat samples, regardless of the type of NPs applied. The application of chemically obtained NPs induced the most significant changes, completely blocking the assimilation of Fe, Mo, As, Sb, and Sm, and favoring much higher accumulation of Br than biogenic NPs. The decrease in chlorophylls and carotenoids is correlated with increase in antioxidant capacity, and occurs with increase of Mo, Al, Mg, K, Zn, and Ca content. The behavior of total polyphenols is correlated with Br content, and antagonist to Al behavior. From the point of view of bioactive compounds, the most affected plants were those that grew in the presence of CuO-NP-cel, while from the point of view of elementary analysis, the most affected plants were those grown in the presence of CuO-NP. By corroborating the obtained results, it was found that the CuO NPs have a negative effect on wheat plants.
在本研究中,研究了氧化铜纳米粒子(CuO NPs)对生物活性化合物的影响、可能发生的超微结构变化以及小麦的元素含量。估计了在存在或不存在 CuO NPs 的情况下生长的小麦植物的变化。CuO NPs 的应用降低了叶绿素和类胡萝卜素的含量,增加了多酚和抗氧化能力的含量。超微结构分析表明,用 CuO NPs 处理的植物受到负面影响。土壤添加完全抑制了十七种元素的积累,而 K、Br、Al 和 Zn 则在小麦样品中积累,而 Cl、Na、Ba 和 Sr 的含量则减少,无论应用的 NPs 类型如何。化学获得的 NPs 的应用诱导了最显著的变化,完全阻止了 Fe、Mo、As、Sb 和 Sm 的同化,并有利于比生物源 NPs 更高的 Br 积累。叶绿素和类胡萝卜素的减少与抗氧化能力的增加有关,并且与 Mo、Al、Mg、K、Zn 和 Ca 含量的增加有关。总多酚的行为与 Br 含量相关,与 Al 的行为相反。从生物活性化合物的角度来看,受影响最大的植物是那些在 CuO-NP-cel 存在下生长的植物,而从元素分析的角度来看,受影响最大的植物是那些在 CuO-NP 存在下生长的植物。通过证实所获得的结果,发现 CuO NPs 对小麦植物有负面影响。