Jin Huiyu, Lin Guohe, Ma Mingzi, Wang Lin, Liu Lixiang
Miami College, Jinming Campus, Henan University, Kaifeng 475004, China.
Zhoukou Environmental Science and Technology Information Service Center, Zhoukou 466000, China.
Nanomaterials (Basel). 2024 Dec 26;15(1):17. doi: 10.3390/nano15010017.
Microplastics (MPs) are emerging pollutants of global concern, while heavy metals such as copper ions (Cu) are longstanding environmental contaminants with well-documented toxicity. This study investigates the independent and combined effects of polystyrene microplastics (PS-MPs) and Cu on the physiological and biochemical responses of rice seedlings ( L.), a key staple crop. Hydroponic experiments were conducted under four treatment conditions: control (CK), PS-MPs (50 mg·L), Cu (20 mg·L Cu), and a combined PS-MPs + Cu treatment. The results showed that PS-MPs had a slight stimulatory effect on root elongation, while Cu exposure mildly inhibited root growth. However, the combined treatment (PS-MPs + Cu) demonstrated no significant synergistic or additive toxicity on growth parameters such as root, stem, and leaf lengths or biomass (fresh and dry weights). Both PS-MPs and Cu significantly reduced peroxidase (POD) activity in root, stem, and leaf, indicating oxidative stress and disrupted antioxidant defenses. Notably, in the combined treatment, PS-MPs mitigated Cu toxicity by adsorbing Cu ions, reducing their bioavailability, and limiting Cu accumulation in rice tissues. These findings reveal a complex interaction between MPs and heavy metals in agricultural systems. While PS-MPs can alleviate Cu toxicity by reducing its bioavailability, they also compromise antioxidant activity, potentially affecting plant resilience to stress. This study provides a foundation for understanding the combined effects of MPs and heavy metals, emphasizing the need for further research into their long-term environmental and agronomic impacts.
微塑料(MPs)是全球关注的新兴污染物,而诸如铜离子(Cu)等重金属则是具有充分记录毒性的长期环境污染物。本研究调查了聚苯乙烯微塑料(PS-MPs)和铜对关键主食作物水稻幼苗(L.)生理和生化反应的独立及联合影响。在四种处理条件下进行水培实验:对照(CK)、PS-MPs(50 mg·L)、铜(20 mg·L Cu)以及PS-MPs + 铜联合处理。结果表明,PS-MPs对根伸长有轻微刺激作用,而暴露于铜会轻微抑制根生长。然而,联合处理(PS-MPs + 铜)对根、茎、叶长度或生物量(鲜重和干重)等生长参数未表现出显著的协同或相加毒性。PS-MPs和铜均显著降低了根、茎和叶中的过氧化物酶(POD)活性,表明存在氧化应激并破坏了抗氧化防御。值得注意的是,在联合处理中,PS-MPs通过吸附铜离子、降低其生物有效性并限制铜在水稻组织中的积累来减轻铜毒性。这些发现揭示了农业系统中微塑料和重金属之间的复杂相互作用。虽然PS-MPs可以通过降低铜的生物有效性来减轻铜毒性,但它们也会损害抗氧化活性,可能影响植物对压力的恢复能力。本研究为理解微塑料和重金属的联合影响提供了基础,强调需要进一步研究它们对环境和农艺的长期影响。