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聚乙烯和可生物降解微塑料对蒲公英生理和代谢谱的影响。

Effects of polyethylene and biodegradable microplastics on the physiology and metabolic profiles of dandelion.

机构信息

College of Chemistry, Chemical Engineering and Resource Utilization, Northeast Forestry University, Harbin, 150040, China; Key Laboratory of Forest Plant Ecology, Ministry of Education, Northeast Forestry University, Harbin, 150040, China.

College of Chemistry, Chemical Engineering and Resource Utilization, Northeast Forestry University, Harbin, 150040, China; Key Laboratory of Forest Plant Ecology, Ministry of Education, Northeast Forestry University, Harbin, 150040, China.

出版信息

Environ Pollut. 2024 Jul 1;352:124116. doi: 10.1016/j.envpol.2024.124116. Epub 2024 May 6.

Abstract

Biodegradable plastics, such as poly(butylene adipate terephthalate) (PBAT) and polylactic acid (PLA), are potential alternatives to conventional polyethylene (PE), both of which are associated with the production of microplastics (MPs). However, the toxicity of these compounds on medicinal plants and their differential effects on plant morphophysiology remain unclear. This study supplemented soils with MPs sized at 200 μm at a rate of 1% w/w and incubated them for 50 days to investigate the impact of MPs on the growth and metabolites of dandelion (Taraxacum mongolicum Hand.-Mazz.). The results demonstrated that the investigated MPs decreased the growth of dandelion seedlings, induced oxidative stress, and altered the activity of antioxidant enzymes (superoxide dismutase, peroxidase, and catalase). Based on the comprehensive toxicity assessment results, the ecological toxicity was in the following order: PE MPs > PBAT MPs > PLA MPs. Metabolomics analyses revealed metabolic reprogramming in dandelion plants, leading to the enrichment of numerous differentially accumulated metabolites (DAMs) in the leaves. These pathways include carbohydrate metabolism, energy metabolism, and biosynthesis of secondary metabolites, suggesting that dandelions respond to MP stress by enhancing the activity of sugar, organic acid, and amino acid metabolic pathways. In addition, phenolic acids and flavonoids are critical for maintaining the balance in the antioxidant defense system. Our results provide substantial insights into the toxicity of biodegradable MPs to plants and shed light on plant defense and adaptation strategies. Further assessment of the safety of biodegradable MPs in terrestrial ecosystems is essential to provide guidance for environmentally friendly management.

摘要

可生物降解塑料,如聚己二酸/对苯二甲酸丁二酯(PBAT)和聚乳酸(PLA),是传统聚乙烯(PE)的潜在替代品,这两者都与微塑料(MPs)的产生有关。然而,这些化合物对药用植物的毒性及其对植物形态生理学的差异影响尚不清楚。本研究在土壤中添加了大小为 200 μm 的 MPs,添加量为 1% w/w,并将其培养 50 天,以研究 MPs 对蒲公英(Taraxacum mongolicum Hand.-Mazz.)生长和代谢物的影响。结果表明,研究中的 MPs 降低了蒲公英幼苗的生长,诱导了氧化应激,并改变了抗氧化酶(超氧化物歧化酶、过氧化物酶和过氧化氢酶)的活性。基于综合毒性评估结果,生态毒性的顺序为:PE MPs>PBAT MPs>PLA MPs。代谢组学分析揭示了蒲公英植物的代谢重编程,导致叶片中大量差异积累代谢物(DAMs)的富集。这些途径包括碳水化合物代谢、能量代谢和次生代谢物的生物合成,表明蒲公英通过增强糖、有机酸和氨基酸代谢途径的活性来应对 MP 胁迫。此外,酚酸和类黄酮对于维持抗氧化防御系统的平衡至关重要。我们的研究结果为可生物降解 MPs 对植物的毒性提供了重要的见解,并揭示了植物的防御和适应策略。进一步评估可生物降解 MPs 在陆地生态系统中的安全性对于提供环保管理的指导至关重要。

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