Application of Struvite Alters the Antibiotic Resistome in Soil, Rhizosphere, and Phyllosphere

根际 叶圈 鸟粪石 抵抗性 沼渣 肥料 生物 芸苔属 农学 抗生素 细菌 抗生素耐药性 生态学 微生物学 厌氧消化 整合子 磷酸盐 生物化学 甲烷 遗传学
作者
Qing‐Lin Chen,Xin-Li An,Yong‐Guan Zhu,Jian-Qiang Su,Michael R. Gillings,Zhi-Long Ye,Cui Li
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:51 (14): 8149-8157 被引量:258
标识
DOI:10.1021/acs.est.7b01420
摘要

Struvite recovered from wastewater is a renewable source of phosphorus and nitrogen and can be used as fertilizer for plant growth. However, antibiotics and resistome can be enriched in the struvite derived from wastewater. Robust understanding of the potential risks after struvite application to soils has remained elusive. Here, we profiled antibiotic resistance genes (ARGs) and mobile genetic elements (MGEs) in struvite, soil, rhizosphere and phyllosphere of Brassica using high-throughput quantitative PCR. A total of 165 ARGs and 10 MGEs were detected. Application of struvite was found to increase both the abundance and diversity of ARGs in soil, rhizosphere and phyllosphere. In addition, ARGs shared exclusively between Brassica phyllosphere and struvite were identified, indicating that struvite was an important source of ARGs found in phyllosphere. Furthermore, OTUs shared between rhizosphere and phyllosphere were found to significantly correlate with ARGs, suggesting that microbiota in leaf and root could interconnect and ARGs might transfer from struvite to the surface of plants via rhizosphere using bacteria as spreading medium. These findings demonstrated that struvite as an organic fertilizer can facilitate the spread of antibiotic resistance into human food chain and this environment-acquired antibiotic resistance should be put into human health risk assessment system.
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