Institute of Chemistry, Slovak Academy of Sciences, Dúbravská cesta 9, 845 38, Bratislava, Slovakia.
Institute of Botany, Plant Science and Biodiversity Centre, Slovak Academy of Sciences, Dúbravská cesta 9, 845 23, Bratislava, Slovakia.
Environ Sci Pollut Res Int. 2020 Jan;27(3):2857-2867. doi: 10.1007/s11356-019-07054-1. Epub 2019 Dec 13.
One of the major reasons why cadmium is toxic in plants is because it disturbs their nutrient balance. The aim of this work is to investigate the effects of cadmium (Cd) and/or silicon (Si) on the nutrient status of poplar callus cells after 3 and after 9 weeks of Cd exposure and to study its possible relationship with the changes in the fresh and dry mass, the plasma membrane integrity, and cadmium tolerance patterns. A principal component analysis (PCA) was performed to reveal the associations among the elements, and the variability between both treatments, and between the 3- and 9-week stages. Cadmium reduced the fresh and dry mass, the plasma membrane integrity, and the concentration of all nutrients except for P. After 9 weeks of exposure, the Cd concentration in callus cells had almost doubled, in spite of an improvement in all studied parameters. These changes may be due to the callus acclimatizing to the Cd stress. In the Cd + Si treatment, the fresh and dry mass, the plasma membrane integrity, and the concentration of nutrients, as well as the growth tolerance index, increased in comparison with the Cd treatment. We assumed that the enhancement in the plasma membrane integrity mediated by Si under Cd stress had caused the improvement in the uptake of nutrients and, consequently, the fresh and dry mass of callus cells had increased. The reduction in Cd concentration due to the Si impact also contributed to the increase in fresh and dry mass.
镉在植物中有毒的一个主要原因是因为它扰乱了它们的营养平衡。这项工作的目的是研究镉(Cd)和/或硅(Si)对杨树愈伤组织细胞在暴露于 Cd 3 周和 9 周后的营养状况的影响,并研究其与鲜重和干重、质膜完整性以及镉耐受性模式的变化之间的可能关系。进行了主成分分析(PCA)以揭示元素之间的关联,以及两种处理之间、3 周和 9 周阶段之间的可变性。镉降低了鲜重和干重、质膜完整性以及除 P 以外的所有营养物的浓度。尽管所有研究参数均有所改善,但在暴露 9 周后,愈伤组织细胞中的 Cd 浓度几乎增加了一倍。这些变化可能是由于愈伤组织适应了 Cd 胁迫。在 Cd + Si 处理中,与 Cd 处理相比,鲜重和干重、质膜完整性、营养物浓度以及生长耐量指数均增加。我们假设 Si 在 Cd 胁迫下介导的质膜完整性增强导致对营养物质的吸收增加,从而导致愈伤组织细胞的鲜重和干重增加。由于 Si 的影响导致 Cd 浓度降低也有助于鲜重和干重的增加。