Institute of Organic Contaminant Control and Soil Remediation, College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing, 210095, China.
Anhui Province Key Laboratory of Farmland Ecological Conservation and Pollution Prevention, School of Resources and Environment, Anhui Agricultural University, Hefei, 230036, China.
Environ Pollut. 2020 May;260:114063. doi: 10.1016/j.envpol.2020.114063. Epub 2020 Jan 24.
17β-estradiol (E2) often coexists with tetracyclines (TCs) in wastewater lagoons at intensive breeding farms, threatening the quality of surrounding water bodies. Microbial degradation is vital in E2 removal, but it is unclear how TCs affect E2 biodegradation. This primary study investigated the mechanisms of E2 degradation by Novosphingobium sp. ES2-1 in the presence of TCs and assessed the removal efficiency of E2 by strain ES2-1 in natural waters containing TCs. E2 biodegradation was unaffected at TCs concentrations below 0.1 mg L yet significantly inhibited at TCs above 10 mg L. As elevation of TCs, E2 biodegradation rate constant decreased, and the biodegradation kinetics equation gradually deviated from the pseudo-first-order dynamics model. Importantly, the presence of TCs, especially at high-level concentrations, significantly hindered E2 ring-opening process but promoted the condensation of some phenolic ring-opening products with NH, thereby increasing the abundance of pyridine derivatives, which were difficult to decompose over time. Additionally, strain ES2-1 could remove 52.1-100% of nature estrogens in TCs-contaminated natural waters within 7 d. Results revealed the mechanisms of TCs in E2 biodegradation and the performance of a functional strain in estrogen removal in realistic TCs-contaminated aqueous solution.
17β-雌二醇(E2)经常与四环素(TCs)共存于集约化养殖场的废水池中,这对周围水体的水质构成威胁。微生物降解在 E2 去除中至关重要,但 TCs 如何影响 E2 生物降解尚不清楚。本初步研究调查了 Novosphingobium sp. ES2-1 在 TCs 存在下降解 E2 的机制,并评估了 ES2-1 菌株在含有 TCs 的天然水中去除 E2 的效率。在 TCs 浓度低于 0.1mg/L 时,E2 生物降解不受影响,但在 TCs 浓度高于 10mg/L 时,E2 生物降解受到显著抑制。随着 TCs 的升高,E2 生物降解速率常数降低,生物降解动力学方程逐渐偏离拟一级动力学模型。重要的是,TCs 的存在,尤其是在高浓度下,显著阻碍了 E2 的开环过程,但促进了一些酚开环产物与 NH 的缩合,从而增加了吡啶衍生物的丰度,这些产物随着时间的推移难以分解。此外,ES2-1 菌株可在 7d 内去除 TCs 污染天然水中 52.1%-100%的天然雌激素。结果揭示了 TCs 在 E2 生物降解中的作用机制以及功能菌株在真实 TCs 污染水溶液中去除雌激素的性能。