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Enhanced and continued degradation of microcystins using microorganisms obtained through natural media

机译:利用通过自然培养基获得的微生物增强和持续降解微囊藻毒素

摘要

Microorganisms isolated through artificial media are often unsustainable in biodegrading microcystins (MCs) in natural water. Here we studied alternative approaches to isolate MCs-degrading bacteria using natural media. In comparison to two species (MS-1 and MS-2) isolated from artificial media and the failure of bacterial colonies formation using water extracts of sediment (10%, w/v), five colony species (WC-1 to WC-5) appeared using concentrated water extracts of sediment that is 10-fold enhancement of nutrient level. In the simulated biodegradation test in Lake Taihu water with continuous supply of MCs, a lag phase of 6 days was required for MS-1 and M-2 to degrade 13% and 15% of the added MC-RR and MC-LR, respectively, whereas the lag phase was only 3 days with approximately 44% and 31% removal of the added MC-RR and MC-LR by WC-1 to WC-5. During the continuous supply experiment, degradation of MCs by MS-1 and MS-2 stopped after 3 days, while degradation of MCs by WC-1 to WC-5 lasted continuously throughout the 18 day test period with 2 to 6-fold enhancement of removal rate. 16S rRNA gene sequences and phylogenetic analysis indicated the potential to amplify species of MCs-degrading bacteria when natural media were used. The results suggested that the increased adaptability of bacteria obtained through concentrated natural media was responsible for the enhanced and continued biodegradation under simulated natural water conditions. (C) 2013 Elsevier B.V. All rights reserved.
机译:通过人工介质分离的微生物在自然水中生物降解微囊藻毒素(MC)中通常不可持续。在这里,我们研究了使用自然培养基分离MCs降解细菌的替代方法。与从人工培养基中分离出的两种菌种(MS-1和MS-2)以及使用沉积物水提取物(10%,w / v)造成的细菌菌落形成失败相比,五个菌落菌种(WC-1至WC-5 )的出现是使用浓缩的沉积物水提取物,其营养水平提高了10倍。在连续供应MC的太湖水模拟生物降解试验中,MS-1和M-2分别需要6天的滞后阶段才能分别降解添加的MC-RR和MC-LR的13%和15% ,而延迟阶段只有3天,WC-1到WC-5分别去除了添加的MC-RR和MC-LR的44%和31%。在连续供应实验中,MS-1和MS-2对MC的降解在3天后停止,而WC-1至WC-5对MC的降解在整个18天的测试过程中持续持续,其中MC-2增强了6倍。去除率。 16S rRNA基因序列和系统发育分析表明,当使用天然培养基时,有潜力扩增降解MCs的细菌。结果表明,通过浓缩天然培养基获得的细菌适应性增强是模拟自然水条件下生物降解增强和持续的原因。 (C)2013 Elsevier B.V.保留所有权利。

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    Li Hong; Pan Gang;

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  • 年度 2014
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