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聚氯乙烯微塑料对玉米(Zea mays L.)幼苗生长和生理特性的响应主要受土壤有效氮的控制。

Responses of maize (Zea mays L.) seedlings growth and physiological traits triggered by polyvinyl chloride microplastics is dominated by soil available nitrogen.

机构信息

School of Material and Chemical Engineering, Zhengzhou University of Light Industry, Zhengzhou 430000, China; Collaborative Innovation Center of Environmental Pollution Control and Ecological Restoration, Zhengzhou, Henan Province 430000, China.

School of Material and Chemical Engineering, Zhengzhou University of Light Industry, Zhengzhou 430000, China.

出版信息

Ecotoxicol Environ Saf. 2023 Mar 1;252:114618. doi: 10.1016/j.ecoenv.2023.114618. Epub 2023 Feb 10.

Abstract

As a burgeoning pollutant, microplastics (MPs) has elicited global concern. However, ecological effects and mechanisms of MPs on plant-soil system are still poorly understood. In the present study, the impacts of polyvinyl chloride microplastics (PVC-MPs) on maize (Zea mays L.) seedlings growth and physiological traits and soil properties were discussed through a 30-day pot experiment. Results showed that PVC-MPs had greater toxicity effect on seedlings shoot biomass than root biomass. To defense the impact of PVC-MPs, the superoxide dismutase and catalase activities in seedlings leaf were stimulated. Moreover, the adhesion of MPs on soil particles increased, and soil microorganism, enzymes, and nutrients were altered significantly with increasing content of PVC-MPs. Notably, soil nitrate nitrogen decreased significantly with increasing content of PVC-MPs, whereas soil ammonium nitrogen was promoted under lower contents (0.1% and 1%) of PVC-MPs. Redundancy analysis indicated that soil nitrate nitrogen and ammonium nitrogen can explain 87.4% and 7.7% of variation in maize seedlings growth and physiological traits, respectively. These results display that maize seedlings shoot is more susceptible to the impact of PVC-MPs and soil available nitrogen is the primary limiting factor on maize seedlings growth and physiological traits triggered by PVC-MPs. Impacts of PVC-MPs on maize seedlings growth and physiological traits by nitrogen depletion lead to the possible yield and economic loess and potential risks due to the over use of nitrogen fertilizers.

摘要

作为一种新兴的污染物,微塑料(MPs)引起了全球关注。然而,MPs 对植物-土壤系统的生态影响和作用机制仍知之甚少。本研究通过 30 天的盆栽试验,探讨了聚氯乙烯微塑料(PVC-MPs)对玉米(Zea mays L.)幼苗生长和生理特性及土壤性质的影响。结果表明,PVC-MPs 对幼苗地上部生物量的毒性作用大于对根系生物量的毒性作用。为了抵御 PVC-MPs 的影响,幼苗叶片中超氧化物歧化酶和过氧化氢酶的活性受到了刺激。此外,随着 PVC-MPs 含量的增加,MPs 对土壤颗粒的黏附作用增强,土壤微生物、酶和养分也发生了显著变化。值得注意的是,土壤硝态氮含量随 PVC-MPs 含量的增加而显著降低,而土壤铵态氮在较低含量(0.1%和 1%)下受到促进。冗余分析表明,土壤硝态氮和铵态氮分别可以解释玉米幼苗生长和生理特性变化的 87.4%和 7.7%。这些结果表明,玉米幼苗地上部对 PVC-MPs 的影响更为敏感,土壤有效氮是 PVC-MPs 对玉米幼苗生长和生理特性影响的主要限制因素。由于过度使用氮肥,PVC-MPs 通过氮素枯竭对玉米幼苗生长和生理特性的影响可能导致可能的产量和经济损失以及潜在的风险。

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