Sub-micron microplastics affect nitrogen cycling by altering microbial abundance and activities in a soil-legume system

根际 固氮 氮气循环 重氮 豆类 丰度(生态学) 生物 环境化学 微生物 固氮酶 硝化作用 微塑料 微生物种群生物学 细菌 植物 化学 农学 氮气 生态学 有机化学 遗传学
作者
Kanghee Kim,Insang Song,Hakwon Yoon,June-Woo Park
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:460: 132504-132504 被引量:1
标识
DOI:10.1016/j.jhazmat.2023.132504
摘要

Recently, the environmental and agricultural impact of plastic waste has attracted considerable attention. Here, we investigated the impact of sub-micron polyethylene (PE) and polypropylene (PP) microplastics (MPs) on nitrogen cycling, with emphasis on bacterial abundance and diversity in a soil-soybean (Glycine max) system. Exposure to soil containing MPs (50 and 500 mg kg-1) did not affect soybean growth, but significantly increased plant nitrogen uptake, which was confirmed by increased activities of nitrogenase in the soil and glutamine synthetase in soybean root. Additionally, there was an increase in 16S gene copy number and carbon and nitrogen substrate utilization, indicating increased abundance and activity of rhizosphere microbial communities. Moreover, MP contamination affected the taxonomic profile of rhizosphere bacteria, especially the abundance of symbiotic and free-living bacteria involved in nitrogen cycling. Furthermore, qPCR analysis of nitrogen-related genes and Kyoto Encyclopedia of Genes and Genomes analysis of 16S rRNA gene sequencing data revealed an increased abundance of functional genes associated with nitrogen fixation and nitrification. However, the concentration and polymer type of MPs did not have a significant impact in our system. Overall, these results provide insights into the interactions between MPs and rhizosphere bacterial communities in the soil-legume system.
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