Fedorenko Aleksei G, Minkina Tatiana M, Chernikova Natalia P, Fedorenko Grigoriy M, Mandzhieva Saglara S, Rajput Vishnu D, Burachevskaya Marina V, Chaplygin Victor A, Bauer Tatiana V, Sushkova Svetlana N, Soldatov Aleksandr V
Southern Federal University, 105 Bolshaya Sadovaya Str., Rostov-on-Don, Russia, 344006.
Federal Research Center the Southern Scientific Center of the Russian Academy of Sciences, Chehova St., Rostov-on-Don, Russia, 344006.
Environ Geochem Health. 2021 Apr;43(4):1673-1687. doi: 10.1007/s10653-020-00530-5. Epub 2020 Feb 5.
Nowadays, nanotechnology is one of the most dynamically developing and most promising technologies. However, the safety issues of using metal nanoparticles, their environmental impact on soil and plants are poorly understood. These studies are especially important in terms of copper-based nanomaterials because they are widely used in agriculture. Concerning that, it is important to study the mechanism behind the mode of CuO nanoparticles action at the ultrastructural intracellular level. It is established that the contamination with CuO has had a negative influence on the development of spring barley. A greater toxic effect has been exerted by the introduction of CuO nanoparticles as compared to the macrodispersed form. A comparative analysis of the toxic effects of copper oxides and nano-oxides on plants has shown changes in the tissue and intracellular levels in the barley roots. However, qualitative changes in plant leaves have not practically been observed. In general, conclusions can be made that copper oxide in nano-dispersed form penetrates better from the soil into the plant and can accumulate in large quantities in it.
如今,纳米技术是发展最为活跃且最具前景的技术之一。然而,金属纳米颗粒的使用安全问题、其对土壤和植物的环境影响却鲜为人知。就铜基纳米材料而言,这些研究尤为重要,因为它们在农业中被广泛应用。鉴于此,研究氧化铜纳米颗粒在细胞超微结构水平上的作用机制十分重要。已证实,氧化铜污染对春大麦的生长发育产生了负面影响。与宏观分散形式相比,引入氧化铜纳米颗粒产生了更大的毒性作用。对铜氧化物和纳米氧化物对植物毒性作用的比较分析表明,大麦根的组织和细胞水平发生了变化。然而,在植物叶片中实际上并未观察到质性变化。总体而言,可以得出结论,纳米分散形式的氧化铜从土壤进入植物的穿透性更好,并且能够在植物中大量积累。