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微/纳米塑料和氧化锌纳米颗粒在不同光照条件下对生菜幼苗的联合影响

Combined effects of micro/nanoplastics and ZnO nanoparticles on lactuca sativa seedlings under varied lighting.

作者信息

Yuan Xuancheng, Zhang Bochen, Zhang Fan, Wang Zhuang

机构信息

School of Environmental Science and Engineering, Nanjing University of Information Science and Technology, Nanjing 210044, PR China.

College of Environmental Science and Engineering, Yangzhou University, Yangzhou 225127, PR China.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2025 Oct;296:110233. doi: 10.1016/j.cbpc.2025.110233. Epub 2025 May 26.

Abstract

Micro/nanoplastics (MNPs) can serve as vectors for engineered nanoparticles (ENPs), thereby eliciting mixture toxicological responses in target species. However, our understanding of the combined environmental impacts of lighting conditions and co-exposure to MNPs and ENPs on crop plants remains limited. Herein, we investigated the individual and joint effects of polystyrene microplastics (PMs; 1 μm) or nanoplastics (PNs; 50-100 nm) and ZnO nanoparticles (ZnO NPs) on seed germination and early seedling growth of lettuce (Lactuca sativa) under the dark condition or the light-dark cycle condition. The results showed that the joint toxic effects of PMs/PNs and ZnO NPs on seed germination were antagonistic, regardless of lighting conditions. Furthermore, the coexistence of PMs/PNs attenuated the inhibitory effect of ZnO NPs on the total photosynthetic pigment content in seedling shoots. Under the light-dark cycle condition, the translocation factor values of zinc from seedling roots to shoots when exposed to PMs or PNs with ZnO NPs exceeded 1, indicating that zinc in the form of ZnO NPs easily migrated from seedling roots to shoots. When ZnO NPs were combined with either PMs or PNs under varying light conditions, a consistent alleviation of oxidative stress was observed in the seedlings compared to individual particle treatments. This finding may represent a key cellular mechanism underlying the antagonistic effects between PMs/PNs and ZnO NPs. Additionally, the expression of Cu/Zn-superoxide dismutase gene in seedlings was differentially modulated in response to both individual and combined exposures to PMs/PNs and ZnO NPs. Collectively, this study provides comprehensive insights into the cellular and molecular responses of agricultural crops under complex environmental conditions.

摘要

微塑料/纳米塑料(MNPs)可作为工程纳米颗粒(ENPs)的载体,从而在目标物种中引发混合毒理学反应。然而,我们对光照条件以及MNPs与ENPs共同暴露对作物的综合环境影响的了解仍然有限。在此,我们研究了聚苯乙烯微塑料(PMs;1μm)或纳米塑料(PNs;50 - 100nm)与氧化锌纳米颗粒(ZnO NPs)在黑暗条件或明暗循环条件下对生菜(Lactuca sativa)种子萌发和幼苗早期生长的单独及联合影响。结果表明,无论光照条件如何,PMs/PNs与ZnO NPs对种子萌发的联合毒性作用均为拮抗作用。此外,PMs/PNs的共存减弱了ZnO NPs对幼苗地上部分总光合色素含量的抑制作用。在明暗循环条件下,当与ZnO NPs一起暴露于PMs或PNs时,锌从幼苗根部向地上部分的转运因子值超过1,表明以ZnO NPs形式存在的锌很容易从幼苗根部迁移到地上部分。当在不同光照条件下将ZnO NPs与PMs或PNs联合使用时,与单独颗粒处理相比,在幼苗中观察到氧化应激持续减轻。这一发现可能代表了PMs/PNs与ZnO NPs之间拮抗作用的关键细胞机制。此外,幼苗中铜/锌超氧化物歧化酶基因的表达在对PMs/PNs和ZnO NPs的单独及联合暴露反应中受到不同程度的调节。总体而言,本研究为复杂环境条件下农作物的细胞和分子反应提供了全面的见解。

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