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Microplastics drive microbial assembly, their interactions, and metagenomic functions in two soils with distinct pH and heavy metal availability

基因组 环境化学 土壤水分 蛋白质细菌 微塑料 土壤微生物学 化学 微生物种群生物学 生物强化 细菌 生物 生物修复 生态学 污染 16S核糖体RNA 生物化学 基因 遗传学
作者
Jun Meng,Wenjin Li,Chengmei Diao,Zhangtao Li,Jiayi Zhao,Ghulam Haider,Haibo Zhang,Jun Xu,Minjun Hu,Shengdao Shan,Huaihai Chen
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:458: 131973-131973 被引量:29
标识
DOI:10.1016/j.jhazmat.2023.131973
摘要

Microplastics (MPs) have emerged as widely existing global environmental concerns in terrestrial ecosystems. However, the mechanisms that how MPs are affecting soil microbes and their metagenomic functioning is currently uncertain. Herein, we investigated the response mechanisms of bacterial and fungal communities as well as the metagenomic functions to the addition of MPs in two soils with distinct pH and heavy metals. In this study, the acidic soil (Xintong) and the neutral soil (Huanshan) contaminated by heavy metals were incubated with Polyvinyl Chloride (PVC) MPs at ratios of 2.5% and 5% on 60 and 120 days. We aimed to evaluate the responding, assembly, and interactions of the metagenomic taxonomy and function. Results showed that only in the acidic soil, PVC MPs significantly increased soil pH and decreased CaCl2-extractable heavy metals, and also reduced bacterial alpha diversity and interaction networks. The relative proportions of Proteobacteria and Bacteroidota in bacteria, and Mortierellomycota in fungi, were increased, but Chloroflexi and Acidobacteriota in bacteria, Ascomycota and Basidiomycota in fungi, were significantly decreased by PVC MPs. Metagenomic functions related to C cycling were repressed but the nutrient cycles were enriched with PVC MPs. In conclusion, our study suggests that the addition of PVC MPs could shift soil microbial community and metagenomic functioning, as well as increasing soil pH and reduced heavy metal availability.
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