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揭示可生物降解聚乳酸微塑料对草甸土壤健康的影响。

Unveiling the impact of biodegradable polylactic acid microplastics on meadow soil health.

作者信息

Liu Shuming, Chen Binglin, Wang Kaili, Wang Jinghuizi, Wang Kaili, Suo Yan, Yang Xiaoyu, Zhu Yaokun, Zhang Jiaxing, Lu Mengchu, Liu Yunqing

机构信息

School of Resources and Environment, Yili Normal University, Yining, 835000, China.

Institute of Resources and Ecology, Yili Normal University, Yining, 835000, China.

出版信息

Environ Geochem Health. 2025 Jan 8;47(2):45. doi: 10.1007/s10653-025-02358-3.

Abstract

Soil microplastics (MPs) pollution has garnered considerable attention in recent years. The use of biodegradable plastics for mulching has led to significant quantities of plastic entering agro-ecosystems. However, the effects of biodegradable polylactic acid (PLA) plastics on meadow soils remain underexplored. This study investigates the impacts of PLA-MPs of varying particle sizes and concentrations on soil physicochemical properties, enzyme activities, and microbial communities through a 60-day incubation experiment. PLA-MPs increased the pH, soil organic matter, total nitrogen (TN) and available potassium (AK) content, as well as enhanced the activities of superoxide dismutase (S-SOD), peroxidase (S-POD), soil catalase (S-CAT), β-glucosidase (S-β-GC) and urease (S-UE) activities. Conversely, a decrease in alkaline phosphatase (S-ALP) activity was observed. The influence of PLA-MPs on soil physicochemical properties was more pronounced with larger particle sizes, whereas smaller particles had a greater effect on enzyme activities. Additionally, PLA-MPs led to an increase in the abundance of Acidobacteriota, Chloroflexi, and Gemmatimonadota, while the abundance of Proteobacteria, Actinobacteriota, and Patescibacteria declined. Mantel test analysis showed that changes in microbial community composition affected soil properties such as pH, AK, S-UE and S-β-GC. Phylogenetic Investigation of Communities by Reconstruction of Unobserved States (PICRUSt2) analysis demonstrated that PLA-MPs modify bacterial metabolic pathways. Our results suggest that particle size and concentration of PLA-MPs differentially affect soil nutrients and microbial community structure and function, with more significant effects observed at larger particle sizes and higher concentrations.

摘要

近年来,土壤微塑料(MPs)污染已引起广泛关注。使用可生物降解塑料进行地膜覆盖导致大量塑料进入农业生态系统。然而,可生物降解聚乳酸(PLA)塑料对草甸土壤的影响仍未得到充分研究。本研究通过为期60天的培养实验,研究了不同粒径和浓度的PLA-MPs对土壤理化性质、酶活性和微生物群落的影响。PLA-MPs提高了土壤pH值、土壤有机质、全氮(TN)和速效钾(AK)含量,并增强了超氧化物歧化酶(S-SOD)、过氧化物酶(S-POD)、土壤过氧化氢酶(S-CAT)、β-葡萄糖苷酶(S-β-GC)和脲酶(S-UE)的活性。相反,观察到碱性磷酸酶(S-ALP)活性下降。PLA-MPs对土壤理化性质的影响在较大粒径时更为明显,而较小粒径对酶活性的影响更大。此外,PLA-MPs导致酸杆菌门、绿弯菌门和芽单胞菌门的丰度增加,而变形菌门、放线菌门和Patescibacteria的丰度下降。Mantel检验分析表明,微生物群落组成的变化影响了土壤性质,如pH值、AK、S-UE和S-β-GC。通过未观察状态重建进行群落系统发育研究(PICRUSt2)分析表明,PLA-MPs改变了细菌代谢途径。我们的结果表明,PLA-MPs的粒径和浓度对土壤养分以及微生物群落结构和功能有不同影响,在较大粒径和较高浓度下观察到的影响更为显著。

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