Enrichment of tetracycline-degrading bacterial consortia: Microbial community succession and degradation characteristics and mechanism

生物降解 四环素 基因组 微生物种群生物学 化学 假单胞菌 微生物降解 细菌 微生物学 降级(电信) 16S核糖体RNA 环境化学 食品科学 微生物 生物 生物化学 基因 抗生素 有机化学 电信 遗传学 计算机科学
作者
Xiuli Chen,Yanchu Ke,Ying Zhu,Mingbang Xu,Chao Chen,Shuguang Xie
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:448: 130984-130984 被引量:80
标识
DOI:10.1016/j.jhazmat.2023.130984
摘要

Tetracycline (TC) is an antibiotic that is recently found as an emerging pollutant with low biodegradability. Biodegradation shows great potential for TC dissipation. In this study, two TC-degrading microbial consortia (named SL and SI) were respectively enriched from activated sludge and soil. Bacterial diversity decreased in these finally enriched consortia compared with the original microbiota. Moreover, most ARGs quantified during the acclimation process became less abundant in the finally enriched microbial consortia. Microbial compositions of the two consortia as revealed by 16 S rRNA sequencing were similar to some extent, and the dominant genera Pseudomonas, Sphingobacterium, and Achromobacter were identified as the potential TC degraders. In addition, consortia SL and SI were capable of biodegrading TC (initial 50 mg/L) by 82.92% and 86.83% within 7 days, respectively. They could retain high degradation capabilities under a wide pH range (4-10) and at moderate/high temperatures (25-40 °C). Peptone with concentrations of 4-10 g/L could serve as a desirable primary growth substrate for consortia to remove TC through co-metabolism. A total of 16 possible intermediates including a novel biodegradation product TP245 were detected during TC degradation. Peroxidase genes, tetX-like genes and the enriched genes related to aromatic compound degradation as revealed by metagenomic sequencing were likely responsible for TC biodegradation.
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