Anaerobic sulfamethoxazole‐degrading bacterial consortia in antibiotic‐contaminated wetland sediments identified by DNA‐stable isotope probing and metagenomics analysis

稳定同位素探测 微生物学 厚壁菌 生物 基因组 生物强化 环境化学 蛋白质细菌 微观世界 污染 细菌 生物修复 微生物 化学 生态学 16S核糖体RNA 基因 生物化学 遗传学
作者
Jianfei Chen,Yuyin Yang,Yanchu Ke,Xiuli Chen,Xinshu Jiang,Chao Chen,Shuguang Xie
出处
期刊:Environmental Microbiology [Wiley]
卷期号:24 (8): 3751-3763 被引量:12
标识
DOI:10.1111/1462-2920.16091
摘要

Summary Anaerobic degradation has been demonstrated as an important pathway for the removal of sulfonamide (SA) in contaminated environments, and identifying the microorganisms responsible for the degradation of SA is a key step in developing bioaugmentation approaches. In this study, we investigated the anaerobic degradation activity of three SA [sulfadiazine (SDZ), sulfamethazine (SMZ) and sulfamethoxazole (SMX)] and the associated bacterial community in wetland sediments contaminated by aquaculture (in Fujian Province, coded with FJ), livestock farming (in Sichuan Province, coded with SC), or rural wastewaters (in Guangdong Province, coded with GD). Additionally, the combination of DNA‐stable isotope probing (SIP) with metagenomics was further applied to assess the active SA‐degrading microbes using SMX as a model SA. Among SDZ, SMZ and SMX, only SMX could be effectively dissipated, and the degradation of SMX was relatively fast in the microcosms of sediments with higher levels of SA contamination (FJ and SC). The anaerobic biotransformation pathway of SMX was initiated by hydrogenation with the cleavage of the N–O bond on the isoxazole ring. DNA‐SIP revealed that the in situ active anaerobic SMX‐degraders (5, 18 and 3 genera in sediments FJ, SC and GD respectively) were dominated by Proteobacteria in sediments FJ and SC, but by Firmicutes (two Family XVIII members) in sediment GD. Mycobacterium , unclassified Burkholderiaceae and Rhodocyclaceae were identified as the dominant active SMX‐degrading bacteria in both sediments FJ and SC. Higher proportions of antibiotic resistance gene and genes involved in various functional categories were observed in sediments FJ and SC.
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