School of Resources and Environment, Northeast Agricultural University, Harbin, 150030, People's Republic of China.
School of Resources and Environment, Northeast Agricultural University, Harbin, 150030, People's Republic of China.
Chemosphere. 2023 Jul;328:138520. doi: 10.1016/j.chemosphere.2023.138520. Epub 2023 Mar 28.
Heavy metal pollution is increasing, and rare earth elements (REE) play an important role in the environmental impact of heavy metals. Mixed heavy metal pollution is a major issue with complex effects. Despite substantial research on single heavy metal pollution, relatively few studies have focused on pollution from rare earth heavy metal composites. We studied the effects of different concentrations of Ce-Pb on the antioxidant activity in root tip cells and biomass of Chinese cabbage. We also used the integrated biomarker response (IBR) to evaluate the toxic effects of rare earth-heavy metal pollution on Chinese cabbage. We used programmed cell death (PCD) for the first time to reflect the toxicological effects of heavy metals and rare earths and studied the interaction between Ce and Pb in root tip cells in depth. Our results showed that Ce-Pb compound pollution can induce PCD in the root cells of Chinese cabbage, and the toxicity of compound pollutants is greater than that of single pollutants. Our analyses also provide the first evidence that Ce and Pb exert interaction effects in the cell. Ce induces Pb transfer in plant cells. The Pb content in the cell wall decreases from 58% to 45%. Additionally, Pb induced Ce valence changes. Ce (III) decreased from 50% to 43%, while Ce (IV) increased from 50% to 57%, directly resulting in PCD in the roots of Chinese cabbage. These findings improve our understanding of the harmful effects of compound pollution with rare earth metals and heavy metals on plants.
重金属污染日益严重,稀土元素(REE)在重金属的环境影响中起着重要作用。混合重金属污染是一个主要问题,具有复杂的影响。尽管对单一重金属污染进行了大量研究,但相对较少的研究关注稀土重金属复合污染。我们研究了不同浓度的铈-铅对白菜根尖细胞抗氧化活性和生物量的影响。我们还使用综合生物标志物响应(IBR)来评估稀土-重金属污染对白菜的毒性影响。我们首次使用程序性细胞死亡(PCD)来反映重金属和稀土的毒理学效应,并深入研究了根尖细胞中铈和铅之间的相互作用。我们的结果表明,铈-铅复合污染会诱导白菜根尖细胞发生 PCD,复合污染物的毒性大于单一污染物。我们的分析还首次提供了铈和铅在细胞中发挥相互作用的证据。铈诱导植物细胞中铅的转移。细胞壁中的铅含量从 58%降至 45%。此外,铅诱导了铈价态的变化。Ce(III)从 50%降至 43%,而 Ce(IV)从 50%增至 57%,这直接导致白菜根尖的 PCD。这些发现提高了我们对稀土金属和重金属复合污染对植物的有害影响的认识。