Metabolic regulation in soil microbial succession and niche differentiation by the polymer amendment under cadmium stress

Cadmium (Cd) contamination seriously threatens the agricultural production, so exploring the response of soil microenvironment to amendments in Cd-contaminated soils is of importance. In this study, the mechanism of remediation of Cd-contaminated soil using the polymer amendment was studied in cotto...

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Veröffentlicht in:Journal of hazardous materials 2021-08, Vol.416, p.126094-126094, Article 126094
Hauptverfasser: An, Mengjie, Chang, Doudou, Hong, Dashuang, Fan, Hua, Wang, Kaiyong
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Sprache:eng
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Zusammenfassung:Cadmium (Cd) contamination seriously threatens the agricultural production, so exploring the response of soil microenvironment to amendments in Cd-contaminated soils is of importance. In this study, the mechanism of remediation of Cd-contaminated soil using the polymer amendment was studied in cotton flowering stage. The results showed that the concentration of Cd in cotton root and various Cd forms in Cd-contaminated soils were obviously high. High concentration of Cd, especially exchangeable Cd, could seriously affect the soil microenvironment. The root growth of cotton could be promoted, the carbon and nitrogen concentration and storage in soil were increased by 21.72–50.00%, while the exchangeable Cd concentration in soil were decreased by 41.43%, after applying the polymer amendment. In addition, the polymer amendment affected the soil microbial niche, increased the relative abundance of soil bacteria (Flaviaesturariibacter, Rubellimicrobium, and Cnuella), fungi (Verticillium and Tricharina), actinomycetes (Blastococcus and Nocardioides), and fungivores nematodes (Aphelenchus), and improved soil microbial metabolic functions (metabolism of nucleotides and carbohydrates). Therefore, this polymer amendment could be used to remediate severe Cd-contaminated soils, and the changes in the microbial and nematode communities help us understand the detoxification mechanism of the polymer amendment in Cd-contaminated soils. [Display omitted] •Polymer amendment can reduce the bioavailability of Cd in soil.•The change of Cd fractions results in the change of soil niche.•Polymer amendment can reduce Cd stress by stimulating Verticillium and Tricharina.•Polymer amendment regulates the metabolic pathways for carbohydrates and nucleotides.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2021.126094