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首页> 外文期刊>Chemosphere >The chloramine stress induces the production of chloramine decaying proteins by microbes in biomass (biofilm)
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The chloramine stress induces the production of chloramine decaying proteins by microbes in biomass (biofilm)

机译:氯胺胁迫诱导生物量中的微生物(生物膜)产生氯胺降解蛋白。

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In this paper, for the first time, we show in chloraminated systems, the chloramine decaying proteins (CDP) play an important role in bulk water and biomass (biofilm) in resisting disinfectant. Extracellular polymeric substances in biofilm/biomass are known to protect microbes from disinfectants and toxic materials, but the exact mechanism(s) is/are not known. Starting with the seed from a nitrifying chloraminated reactor, two 5 L reactors were fed intermittently with either chloramine or ammonia containing nutrient solution. The degree of nitrification increased with time in both reactors despite an increase in soluble CDP in the chloraminated reactor, while soluble CDP decreased in the ammoniated one. The suspended biomass collected after eight months of operation from chloraminated reactor contained CDP and responded to short-term chloramine stress (1.5 h with initial 1.5 mg-Cl-2. L-1) by the additional production of soluble CDP. The suspended biomass from ammoniated reactor neither contained CDP nor produced soluble CDP as a stress response. The production, release and accumulation of CDP in biomass (biofilm) could be one of several mechanisms microbes use to defend against disinfectants (stress). The new understanding will pave the way for better disinfection management and better design of experiments. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,我们首次展示了在氯化系统中,氯胺降解蛋白(CDP)在大量的水和生物质(生物膜)中具有重要的抗消毒作用。已知生物膜/生物质中的细胞外聚合物会保护微生物免受消毒剂和有毒物质的侵害,但确切的机理尚不清楚。从硝化氯化反应器的种子开始,向两个5 L反应器间歇地喂入含氯胺或氨的营养液。尽管氯化反应器中的可溶性CDP增加,但两个反应器中的硝化度均随时间增加,而氨化反应器中的可溶性CDP下降。在运行八个月后,从氯化反应器中收集的悬浮生物质包含CDP,并通过额外生产可溶性CDP对短期氯胺胁迫(初始1.5 mg-Cl-2。L-1为1.5小时)作出反应。来自氨化反应器的悬浮生物质既不包含CDP,也不产生可溶性CDP作为胁迫响应。 CDP在生物质(生物膜)中的产生,释放和积累可能是微生物用来抵御消毒剂(压力)的几种机制之一。新的认识将为更好的消毒管理和更好的实验设计铺平道路。 (C)2019 Elsevier Ltd.保留所有权利。

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