Straw return promoted the simultaneous elimination of sulfamethoxazole and related antibiotic resistance genes in the paddy soil

稻草 微观世界 化学 蛋白质细菌 放线菌门 污染物 磺胺甲恶唑 农学 食品科学 动物科学 抗生素 环境化学 生物 生物化学 有机化学 基因 16S核糖体RNA
作者
Yue Zhang,Xianqing Zheng,Xiaoyun Xu,Linkui Cao,Haiyun Zhang,Hanlin Zhang,Shuangxi Li,Juanqin Zhang,Naling Bai,Weiguang Lv,Xinde Cao
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:806: 150525-150525 被引量:40
标识
DOI:10.1016/j.scitotenv.2021.150525
摘要

Straw return could provide a natural available carbon source for the soil microorganisms, which might affect the environmental behaviours of organic pollutants. In this study, microcosm system was constructed to investigate the effect of rice straw return on the fate of sulfamethoxazole (SMX) and related antibiotic resistance genes (ARGs). The results showed that straw return (1% of soil dry mass) could accelerate the degradation of SMX via co-metabolism. In the treatment group with rice straw, SMX was rapidly decomposed into small molecular compounds (e.g., (Z)-1-amino-3-oxobut-1-en-1-aminium and benzenesulfinic acid) within the first six days, and SMX was undetectable after 60 days; while for the SMX group without rice straw, 1.3 mg kg−1 of SMX still remained at the 60th day. Straw return could enhance the relative abundances of Proteobacteria involved in SMX degradation, including Microvirga and Ramlibacter, which co-metabolized SMX via the degradation pathways of mineralizable components and aromatic compound. Furthermore, straw return significantly eliminated the ARGs. After 60 days, the int1 and sul1 abundances of the treatment group with rice straw were less than one-tenth of the SMX group without rice straw. The redundancy and network analysis of bacterial community and environmental factors showed that dissolved organic carbon and bacteria belonged to Proteobacteria and Actinobacteria might play positive roles in eliminating ARGs. Our results demonstrate that straw return could promote the simultaneous elimination of SMX and corresponding ARGs, which provides a promising approach to effectively treat antibiotics and ARGs in the farmland.
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