Bacterial community shift and antibiotics resistant genes analysis in response to biodegradation of oxytetracycline in dual graphene modified bioelectrode microbial fuel cell

被引:94
作者
Chen, Junfeng [1 ]
Yang, Yuewei [1 ]
Liu, Yanyan [1 ]
Tang, Meizhen [1 ]
Wang, Renjun [1 ]
Tian, Yuping [1 ]
Jia, Chuanxing [1 ]
机构
[1] Qufu Normal Univ, Sch Life Sci, Dept Environm Sci, Qufu 273165, Peoples R China
关键词
Oxytetracycline (OTC); Dual graphene modified bioelectrode (D-GM-BE); Microbial fuel cell (MFC); Bacterial community shift; Antibiotics resistant genes (ARGs); ELECTRICITY-GENERATION; MEMBRANE BIOREACTOR; DEGRADATION; PERFORMANCE; TETRACYCLINE; DIVERSITY; ABUNDANCE; REMOVAL; BIOFILM; SYSTEM;
D O I
10.1016/j.biortech.2019.01.006
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
This study explored the biodegradation mechanisms of oxytetracycline (OTC/O) and electrochemical characteristics from the perspective of bacterial community shift and OTC resistance genes in dual graphene modified bioelectrode microbial fuel cell (O-D-GM-BE MFC). In phylum level, Proteobacteria was accounted to 95.04% in O-GM-BA, Proteobacteria and Bacteroidetes were accounted to 59.13% and 20.52% in O-GM-BC, which were beneficial for extracellular electron transport (EET) process and OTC biodegradation. In genus level, the most dominant bacteria in O-GM-BA were Salmonella and Trabulsiella, accounting up to 83.04%, moreover, representative exoelectrogens (Geobacter) were enriched, which contributed to OTC biodegradation and electrochemical performances; abundant degrading bacteria (Moheibacter, Comamonas, Pseudomonas, Dechloromonas, Nitrospira, Methylomicrobium, Pseudorhodoferax, Thiobacillus, Mycobacterium) were enriched in O-GM-BC, which contributed to the maximum removal efficiency of OTC; coding resistance genes of efflux pump, ribosome protective protein and modifying or passivating were all found in O-GM-BE, and this explained the OTC removal mechanisms from gene level.
引用
收藏
页码:236 / 243
页数:8
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