数字农科院2.0

Effective simultaneous removal of 17β-estradiol and tetracycline by a novel Alkalibacterium strain: characteristics, mechanisms, and application in livestock wastewater treatment

文献类型: 外文期刊

作者: Wang, Yaqiong;Ye, Huike;Li, Wenxin;Ju, Hanye;He, Yaodong;Yang, Shuo;Liu, Haijiao;Ma, Xiaodong;Bai, Mohan;Zhao, Lixia;Sun, Yang;Li, Xiaojing

作者机构:

关键词: 17 beta-estradiol;Tetracycline;Simultaneous removal;Biotransformation pathway;Genomic analysis;Gene expression

期刊名称: APPLIED MICROBIOLOGY AND BIOTECHNOLOGY

ISSN: 0175-7598

年卷期: 2025 年 109 卷 1 期

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: The environmental risk posed by 17 beta-estradiol (E2) and tetracycline (TC) contamination within livestock wastewater has been widely concerned. Especially, the co-occurrence of these pollutants poses a tremendous challenge to their efficient bioremediation, highlighting the need for strains capable of simultaneous E2 and TC removal. In this study, a novel strain of Alkalibacterium sp. AEPI-S25 was successfully isolated from the sediments of Qinghai Lake, demonstrating the ability to remove 89.91% of 20 mg L-1 E2 and nearly 100% of 20 mg L-1 TC simultaneously within 5 days. AEPI-S25 exhibited remarkable environmental adaptability and maintained high simultaneous removal efficiency under various stress conditions and the presence of two typical livestock wastewater samples. Based on Ultra-Performance Liquid Chromatography coupled with Orbitrap High-Resolution Mass Spectrometry (UPLC-Orbitrap-HRMS) analysis, dehydrogenation and monooxygenation were identified as the key steps in the removal pathways of E2 and TC, respectively. Whole-genome sequencing further identified the potential E2/TC removal genes, and the detected potential E2-dehydrogenation (S25_gene0393) and TC-monooxygenation (S25_gene0878) genes were subsequently validated through transcription analysis and heterologous expression. Notably, S25_gene0878 exhibited significant differences from the well-characterized TC removal gene TetX, extending a new understanding of the bacterial TC removal mechanism. Overall, this study provides the first report of a single microbial strain capable of simultaneously removing E2 and TC, offering valuable insights for the application of microbial technologies in addressing typical E2-TC combined pollution in livestock wastewater.

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