Saud Shah, Wang Depeng, Fahad Shah, Javed Talha, Jaremko Mariusz, Abdelsalam Nader R, Ghareeb Rehab Y
College of Life Sciences, Linyi University, Linyi, China.
Department of Agronomy, Abdul Wali Khan University Mardan, Mardan, Pakistan.
Front Plant Sci. 2022 Oct 28;13:994785. doi: 10.3389/fpls.2022.994785. eCollection 2022.
In recent years, heavy metals-induced soil pollution has increased due to the widespread usage of chromium (Cr) in chemical industries. The release of Cr into the environment has reached its peak causing hazardous environmental pollution. Heavy metal-induced soil pollution is one of the most important abiotic stress affecting the dynamic stages of plant growth and development. In severe cases, it can kill the plants and their derivatives and thereby pose a potential threat to human food safety. The chromium ion effect on plants varies and depends upon its severity range. It mainly impacts the numerous regular activities of the plant's life cycle, by hindering the germination of plant seeds, inhibiting the growth of hypocotyl and epicotyl parts of the plants, as well as damaging the chloroplast cell structures. In this review article, we tried to summarize the possible effects of chromium-induced stress on plant growth, developmental physiology, biochemistry, and molecular regulation and provided the important theoretical basis for selecting remedial plants in chromium-induced contaminated soils, breeding of low toxicity tolerant varieties, and analyzing the mechanism of plant resistance mechanisms in response to heavy metal stress.
近年来,由于铬(Cr)在化学工业中的广泛使用,重金属导致的土壤污染有所增加。铬向环境中的释放已达到峰值,造成了有害的环境污染。重金属导致的土壤污染是影响植物生长发育动态阶段的最重要非生物胁迫之一。在严重的情况下,它会杀死植物及其衍生物,从而对人类食品安全构成潜在威胁。铬离子对植物的影响各不相同,取决于其严重程度范围。它主要通过阻碍植物种子发芽、抑制植物下胚轴和上胚轴部分的生长以及破坏叶绿体细胞结构,来影响植物生命周期的众多正常活动。在这篇综述文章中,我们试图总结铬诱导的胁迫对植物生长、发育生理、生物化学和分子调控的可能影响,并为在铬污染土壤中选择修复植物、培育低毒耐受品种以及分析植物响应重金属胁迫的抗性机制提供重要的理论依据。