Joint Institute for Nuclear Research, 6 Joliot-Curie, 1419890 Dubna, Russia.
National Institute for Research and Development in Electrical Engineering ICPE-CA, 313 Splaiul Unirii, 030138 Bucharest, Romania.
Molecules. 2022 Jul 28;27(15):4835. doi: 10.3390/molecules27154835.
Abiotic stress agents, among them metal stress, can cause oxidative damage to plant cells. In defense, plants can increase the production of secondary metabolites in order to mitigate the harmful effects caused by them. The purpose of this work was to evaluate the effect of two types of copper salts (CuSO and Cu(NO)), added in two different amounts in soil (150 mg/kg, respectively 300 mg/kg), on assimilating pigments, total polyphenols, antioxidant activity and the elemental composition of wheat. The obtained results were compared with those from control plants grown in the same conditions but without copper salts. The amount of assimilating pigments, total polyphenols, and antioxidant activity respectively increases or decreases in the plants treated with copper salts compared to the control depending on the stage of development of the plant. No significant damage induced in the leaves of the wheat plants treated with the selected salts was observed following the TEM analysis. In six-week-old plants it was observed by EDX analysis that the salts are transformed into nanoparticles. The bioactive compounds, elemental composition and their interaction is influenced by concentration of metal's salt, type of salt and exposure period.
非生物胁迫因子,包括金属胁迫,会对植物细胞造成氧化损伤。在防御过程中,植物可以增加次生代谢产物的产量,以减轻它们造成的有害影响。本工作旨在评估两种类型的铜盐(CuSO 和 Cu(NO)),以两种不同的用量(分别为 150 mg/kg 和 300 mg/kg)添加到土壤中,对小麦同化色素、总多酚、抗氧化活性和元素组成的影响。将所得结果与在相同条件下但不含铜盐的对照植物的结果进行比较。与对照相比,在植物发育的不同阶段,用铜盐处理的植物中的同化色素、总多酚和抗氧化活性的量分别增加或减少。经 TEM 分析后,未观察到用选定的盐处理的小麦叶片产生明显的损伤。在 6 周龄的植物中,EDX 分析表明盐转化为纳米颗粒。生物活性化合物、元素组成及其相互作用受金属盐浓度、盐的类型和暴露时间的影响。