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Microbiology combined with metabonomics revealing the response of soil microorganisms and their metabolic functions exposed to phthalic acid esters

Authors :
Changcai Wu
Yajie Ma
Dan Wang
Yongpan Shan
Xianpeng Song
Hongyan Hu
Xiangliang Ren
Xiaoyan Ma
Junyu Luo
Jinjie Cui
Yan Ma
Source :
Ecotoxicology and environmental safety. 233
Publication Year :
2021

Abstract

As microplastics became the focus of global attention, the hazards of plastic plasticizers (PAEs) have gradually attracted people's attention. Agricultural soil is one of its hardest hit areas. However, current research of its impact on soil ecology only stops at the microorganism itself, and there is still lack of conclusion on the impact of soil metabolism. To this end, three most common PAEs (Dimethyl phthalate: DMP, Dibutyl phthalate: DBP and Bis (2-ethylhexyl) phthalate: DEHP) were selected and based on high-throughput sequencing and metabolomics platforms, the influence of PAEs residues on soil metabolic functions were revealed for the first time. PAEs did not significantly changed the alpha diversity of soil bacteria in the short term, but changed their community structure and interfered with the complexity of community symbiosis network. Metabolomics indicated that exposure to DBP can significantly change the soil metabolite profile. A total of 172 differential metabolites were found, of which 100 were up-regulated and 72 were down-regulated. DBP treatment interfered with 43 metabolic pathways including basic metabolic processes. In particular, it interfered with the metabolism of residual steroids and promoted the metabolism of various plasticizers. In addition, through differential labeling and collinear analysis, some bacteria with the degradation potential of PAEs, such as Gordonia, were excavated.

Details

ISSN :
10902414
Volume :
233
Database :
OpenAIRE
Journal :
Ecotoxicology and environmental safety
Accession number :
edsair.doi.dedup.....cce0efa315947fcc399d80e1b5710d60