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Effects of estrone and organic carbon exposure on the transformation of estrone

机译:雌酮和有机碳暴露对雌酮转化的影响

摘要

Exposure of biomass to estrone (E1) and alternate organic substrates was studied to determine whether cometabolism or multiple substrate utilization is an operating mechanism for the transformation of E1 and if feeding intervals affect the selection of E1 degrading bacteria. Biomass generated in membrane bioreactors (MBRs) was capable of degrading E1 regardless of E1 exposure. Nevertheless, pre-exposed biomass had higher E1 transformation rates (P = 0.05) and un-exposed biomass showed a clear lag phase (6 h) prior to E1 tranformation. These results are consistent with and strongly suggest metabolic transformation of E1 via multiple substrate utilization. In the feeding interval study, longer intervals between feeding periods selected for E1 degraders at high organic carbon loads (100 mg COD L−1 d−1; P = 0.018), but had no effect at low organic carbon loads (30 mg COD L−1 d−1; P = 0.32). A lag phase was observed in E1 transformation during famine periods but was absent during feast periods. This result indicates that the presence of other organic carbon substrates speeds the transformation of E1. This research is the first to demonstrate evidence for the role of multiple substrate utilization in the transformation of E1 and suggests operating conditions to improve selection for and activity of E1 degrading bacteria.
机译:研究了将生物量暴露于雌酮(E1)和其他有机底物的情况,以确定是否是代谢代谢或多种底物的利用是E1转化的操作机制,以及进食间隔是否影响E1降解细菌的选择。膜生物反应器(MBR)中产生的生物质能够降解E1,而与E1暴露无关。然而,预先暴露的生物量具有较高的E1转化率(P = 0.05),未暴露的生物量在E1转化之前显示出明显的滞后阶段(6 h)。这些结果与E1通过多种底物利用的代谢转化是一致的,并强烈暗示了E1的代谢转化。在进料间隔研究中,在高有机碳负荷下(100 mg COD L-1 d-1,P = 0.018),为E1降解剂选择的进料周期之间的间隔更长,但在低有机碳负荷下(30 mg COD L,无影响) -1 d-1; P = 0.32)。在饥荒时期的E1转化过程中观察到了滞后阶段,而在盛宴时期则没有。该结果表明,其他有机碳底物的存在加快了E1的转化。这项研究是第一个证明多种底物在E1转化中的作用的证据,并提出了改善E1降解细菌的选择和活性的操作条件。

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