Department of Plant Physiology, Faculty of Biology and Environmental Protection, University of Silesia, Jagiellońska 28, PL-40-032 Katowice, Poland.
Department of Plant Physiology, Faculty of Biology and Environmental Protection, University of Silesia, Jagiellońska 28, PL-40-032 Katowice, Poland.
Ecotoxicol Environ Saf. 2018 Oct;161:8-16. doi: 10.1016/j.ecoenv.2018.05.046. Epub 2018 May 29.
The mechanisms of the toxic effects of Cd and Pb on plant cell growth are still poorly understood. In particular, little is known about their interactive effects, which usually occur in the environment. Moreover, the data that do exist in the literature are controversial. This study describes experiments that were performed with maize (Zea mays) coleoptile segments, which is a classical model system for studies of plant cell elongation growth. Cadmium and lead, which were added at 0.1 mM, reduced the endogenous and IAA-induced elongation growth of maize coleoptile cells. When both metals were added together or in sequence, their effect on IAA-induced growth was more toxic. The medium pH changes, which were measured simultaneously with growth, indicated that while Pb stopped IAA-induced proton extrusion, Cd only partially diminished it. Although Cd was generally more accumulated than Pb in the maize coleoptile segments, when IAA was added together with Pb, it significantly increased the accumulation of the metal. The short-term electrophysiological experiments showed that the addition of Cd caused the depolarisation of the membrane potential (E), whereas Pb caused membrane hyperpolarisation. In the long-term electrophysiological experiments, it was found that the Cd-induced E changes are complex. In conclusion, these results suggest that the effects of Cd and Pb as well as their combination on the elongation growth of maize coleoptile cells and the accumulation of the metals result, among others, from different ionic mechanisms by which each metal change the membrane potential of the cells.
镉和铅对植物细胞生长的毒性作用机制仍知之甚少。特别是,它们的相互作用知之甚少,而这种相互作用通常发生在环境中。此外,文献中现有的数据也存在争议。本研究使用玉米(Zea mays)胚芽鞘段进行了实验,这是研究植物细胞伸长生长的经典模型系统。添加浓度为 0.1mM 的镉和铅会降低内源和 IAA 诱导的玉米胚芽鞘细胞伸长生长。当两种金属一起或顺序添加时,它们对 IAA 诱导生长的影响更为有毒。同时测量生长过程中的介质 pH 值变化表明,虽然 Pb 阻止了 IAA 诱导的质子外排,但 Cd 仅部分减少了质子外排。尽管 Cd 通常比 Pb 在玉米胚芽鞘段中积累更多,但当 IAA 与 Pb 一起添加时,它会显著增加金属的积累。短期电生理实验表明,Cd 的添加会导致膜电位(E)去极化,而 Pb 会导致膜超极化。在长期电生理实验中,发现 Cd 诱导的 E 变化很复杂。总之,这些结果表明,Cd 和 Pb 及其组合对玉米胚芽鞘细胞伸长生长和金属积累的影响除其他外,还源于每种金属改变细胞膜电位的不同离子机制。