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Biodegradation of Endocrine Disruptors in Solid-Liquid Two-Phase Partitioning Systems by Enrichment Cultures

机译:固液两相分配系统中富集培养物对内分泌干扰物的生物降解

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摘要

Naturally occurring and synthetic estrogens and other molecules from industrial sources strongly contribute to the endocrine disruption of urban wastewater. Because of the presence of these molecules in low but effective concentrations in wastewaters, these endocrine disruptors (EDs) are only partially removed after most wastewater treatments, reflecting the presence of these molecules in rivers in urban areas. The development of a two-phase partitioning bioreactor (TPPB) might be an effective strategy for the removal of EDs from wastewater plant effluents. Here, we describe the establishment of three ED-degrading microbial enrichment cultures adapted to a solid-liquid two-phase partitioning system using Hytrel as the immiscible water phase and loaded with estrone, estradiol, estriol, ethynylestradiol, nonylphenol, and bisphenol A. All molecules except ethynylestradiol were degraded in the enrichment cultures. The bacterial composition of the three enrichment cultures was determined using 16S rRNA gene sequencing and showed sequences affiliated with bacteria associated with the degradation of these compounds, such as Sphingomonadales. One Rhodococcus isolate capable of degrading estrone, estradiol, and estriol was isolated from one enrichment culture. These results highlight the great potential for the development of TPPB for the degradation of highly diluted EDs in water effluents.
机译:天然和合成的雌激素及其他来自工业来源的分子对城市废水的内分泌破坏有很大贡献。由于这些分子在废水中的浓度很低但有效,因此在大多数废水处理后,这些内分泌干扰物(EDs)只能部分去除,这反映了这些分子在城市河流中的存在。开发两相分配生物反应器(TPPB)可能是从废水厂废水中去除EDs的有效策略。在这里,我们描述了建立三种适合于固液两相分配系统的ED降解微生物富集培养物,这些系统使用Hytrel作为不混溶的水相,并装有雌酮,雌二醇,雌三醇,乙炔雌二醇,壬基酚和双酚A。全部在富集培养中,除乙炔雌二醇外的其他分子均被降解。使用16S rRNA基因测序确定了三种富集培养的细菌组成,并显示了与这些化合物降解相关的细菌(如鞘氨醇单胞菌)的相关序列。从一种富集培养物中分离出一种能够降解雌酮,雌二醇和雌三醇的红球菌分离株。这些结果凸显了开发TPPB降解废水中高度稀释的EDs的巨大潜力。

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