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Bacterial decolourization enhancement using a constructed mixed consortium

机译:使用人工混合菌群增强细菌脱色

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This study provides an attempt to construct a mixed consortium in high decolourization efficiency to a model dye- reactive red 22, since pure cultures of decolourizer have less colour removal capability in dye-bearing wastewater treatment. In the preceding study, we unintentionally found coexistence of DH5alpha and Pseudomonas luteola resulted in an enhancement for decolourization. Although non-decolourizers (Escherichia coli DH5alpha) were considered metabolically "dormant" in the constructed mixed consortium, their presence still significantly enhanced decolourization performance of the decolourizers (P. luteola). The crucial finding of this study indicates that DH5alpha serves as an active microorganism for biodecolourization enhancement. This "altruistic" characteristics of DH5alpha in mixed consortia gives rise to higher decolourization performance than that without such beneficial interaction (i.e., pure P. luteola cultures). To indicate the contributions due to the presence of DH5alpha, decolourization performances at various pHs, temperature, dissolved oxygen, and dye concentrations were evaluated. Results of repeated batch cultures also showed that consecutive acclimation of P. luteola significantly increased decolourization capability due to longer "age" in dye-containing environments for higher azo-reductase activity. This also supported progressive increases in decolourization performance in sequencing batch cultures. Extracellular metabolites released by non-decolourizers DH5alpha considerably enhanced the decolourization of P. luteola. [References: 32]
机译:这项研究提供了一种构建具有模型活性染料红22的高脱色效率的混合体的尝试,因为纯脱色剂培养物在含染料废水处理中具有较低的脱色能力。在先前的研究中,我们无意间发现DH5alpha和Lseola假单胞菌的并存导致脱色增强。尽管非脱色剂(大肠杆菌DH5alpha)在构建的混合财团中被认为是代谢“休眠”的,但它们的存在仍显着增强了脱色剂(P. luteola)的脱色性能。这项研究的关键发现表明,DH5alpha可以作为一种活性微生物来增强生物脱色作用。 DH5α在混合财团中的这种“利他”特征比没有这种有益的相互作用(即纯黄粉菌培养物)产生更高的脱色性能。为了表明由于DH5α的存在而做出的贡献,评估了在各种pH,温度,溶解氧和染料浓度下的脱色性能。重复分批培养的结果还表明,由于在含染料的环境中较长的“年龄”以实现较高的偶氮还原酶活性,因此,对P. luteola的连续驯化显着提高了脱色能力。这也支持了在分批培养序列中脱色性能的逐步提高。非脱色剂DH5α释放的细胞外代谢物大大增强了黄褐藻的脱色。 [参考:32]

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