Department of Biology, Faculty of Nature and Life Sciences, University of El Oued, PO Box 789, 39000, El Oued, Algeria.
Laboratory of Biology, Environment and Health, University of El Oued, El Oued, Algeria.
Sci Rep. 2024 Apr 14;14(1):8608. doi: 10.1038/s41598-024-58635-1.
This study investigated the influence of cadmium (Cd) and copper (Cu) heavy metals on germination, metabolism, and growth of zucchini seedlings (Cucurbita pepo L.). Zucchini seeds were subjected to two concentrations (100 and 200 μM) of CdCl and CuCl. Germination parameters, biochemical and phytochemical attributes of embryonic axes were assessed. Results revealed that germination rate remained unaffected by heavy metals (Cd, Cu). However, seed vigor index (SVI) notably decreased under Cd and Cu exposure. Embryonic axis length and dry weight exhibited significant reductions, with variations depending on the type of metal used. Malondialdehyde and HO content, as well as catalase activity, did not show a significant increase at the tested Cd and Cu concentrations. Superoxide dismutase activity decreased in embryonic axis tissues. Glutathione S-transferase activity significantly rose with 200 μM CdCl, while glutathione content declined with increasing Cd and Cu concentrations. Total phenol content and antioxidant activity increased at 200 μM CuCl. In conclusion, Cd and Cu heavy metals impede zucchini seed germination efficiency and trigger metabolic shifts in embryonic tissue cells. Response to metal stress is metal-specific and concentration-dependent. These findings contribute to understanding the intricate interactions between heavy metals and plant physiology, aiding strategies for mitigating their detrimental effects on plants.
本研究探讨了镉(Cd)和铜(Cu)重金属对西葫芦种子(Cucurbita pepo L.)萌发、代谢和生长的影响。将西葫芦种子置于两种浓度(100 和 200 μM)的 CdCl 和 CuCl 中。评估了萌发参数、胚胎轴的生化和植物化学特性。结果表明,重金属(Cd、Cu)对萌发率没有影响。然而,种子活力指数(SVI)在 Cd 和 Cu 暴露下明显下降。胚胎轴长度和干重显著降低,变化取决于使用的金属类型。丙二醛和 HO 含量以及过氧化氢酶活性在测试的 Cd 和 Cu 浓度下没有显著增加。超氧化物歧化酶活性在胚胎轴组织中下降。谷胱甘肽 S-转移酶活性在 200 μM CdCl 下显著升高,而谷胱甘肽含量随 Cd 和 Cu 浓度的增加而下降。总酚含量和抗氧化活性在 200 μM CuCl 下增加。总之,Cd 和 Cu 重金属阻碍了西葫芦种子的萌发效率,并引发胚胎组织细胞的代谢变化。对金属胁迫的反应是特定于金属和浓度依赖的。这些发现有助于理解重金属与植物生理学之间的复杂相互作用,为减轻它们对植物的有害影响提供策略。