DOAJ Open Access 2022

Prevalent and highly mobile antibiotic resistance genes in commercial organic fertilizers

Wan-Ying Xie Ya-Ting Wang Jun Yuan Wen-Dan Hong Guo-Qing Niu +4 lainnya

Abstrak

Compost-based organic fertilizers made from animal manures may contain high levels of antibiotic resistance genes (ARGs). However, the factors affecting the abundance and profile of ARGs in organic fertilizers remain unclear. We conducted a national-wide survey in China to investigate the effect of material type and composting process on ARG abundance in commercial organic fertilizers and quantified the contributions of bacterial composition and mobile genetic elements (MGEs) to the structuring of ARGs, using quantitative PCR and Illumina sequencing of 16S rRNA gene amplicons. The tetracycline, sulfonamide, aminoglycoside and macrolide resistance genes were present at high levels in all organic fertilizers. Seven ARGs that confer resistance to clinically important antibiotics, including three β-lactam resistance genes, three quinolone resistance genes and the colistin resistance gene mcr-1, were detected in 8 – 50% the compost samples, whereas the vancomycin resistance gene vanC was not detected. Raw material type had a significant (p < 0.001) effect on the ARG abundance, with composts made from animal feces except some cattle feces generally having higher loads of ARGs than those from non-animal raw materials. Composting process type showed no significant (p > 0.05) effect on ARG abundance in the organic fertilizers. MGEs exerted a greater influence on ARG composition than bacterial community, suggesting a strong mobility of ARGs in the organic fertilizers. Our study highlights the need to manage the risk of ARG dissemination from agricultural wastes.

Topik & Kata Kunci

Penulis (9)

W

Wan-Ying Xie

Y

Ya-Ting Wang

J

Jun Yuan

W

Wen-Dan Hong

G

Guo-Qing Niu

X

Xi Zou

X

Xin-Ping Yang

Q

Qirong Shen

F

Fang-Jie Zhao

Format Sitasi

Xie, W., Wang, Y., Yuan, J., Hong, W., Niu, G., Zou, X. et al. (2022). Prevalent and highly mobile antibiotic resistance genes in commercial organic fertilizers. https://doi.org/10.1016/j.envint.2022.107157

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Informasi Jurnal
Tahun Terbit
2022
Sumber Database
DOAJ
DOI
10.1016/j.envint.2022.107157
Akses
Open Access ✓