厚壁菌
生物炭
堆肥
沼气
蛋白质细菌
食物垃圾
流动遗传元素
微生物种群生物学
肥料
细菌
生物技术
生物
废物管理
农学
生态学
基因
基因组
工程类
生物化学
遗传学
16S核糖体RNA
热解
作者
Yuewei He,Xiaowei Yin,Fanghong Li,Bo Wu,Ling Zhu,Dabing Ge,Nanyi Wang,Anwei Chen,Lihua Zhang,Binghua Yan,Hongli Huang,Lin Luo,Genyi Wu,Jiachao Zhang
标识
DOI:10.1016/j.biortech.2023.128636
摘要
This research investigated biogas residue and biochar addition on antibiotic resistance genes (ARGs), mobile genetic elements (MGEs), and changes in bacterial community during agricultural waste composting. Sequencing technique investigated bacterial community structure and ARGs, MGEs changes. Correlations among physicochemical factors, ARGs, MGEs, and bacterial community structure were determined using redundancy analysis. Results confirmed that biochar and biogas residue amendments effectively lowered the contents of ARGs and MGEs. The main ARGs detected was sul1. Proteobacteria and Firmicutes were the main host bacteria strongly associated with the dissemination of ARGs. The dynamic characteristics of the bacterial community were strongly correlated with pile temperature and pH (P < 0.05). Redundancy and network analysis revealed that nitrate, intI1, and Firmicutes mainly affected the in ARGs changes. Therefore, regulating these key variables would effectively suppress the ARGs spread and risk of compost use.
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