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Simultaneous chromium reduction and phenol degradation in a coculture of Escherichia coli ATCC 33456 and Pseudomonas putida DMP-1.

机译:在大肠杆菌ATCC 33456和恶臭假单胞菌DMP-1的共培养物中同时进行铬还原和苯酚降解。

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摘要

In a defined coculture of a Cr(VI) reducer, Escherichia coli ATCC 33456, and a phenol degrader, Pseudomonas putida DMP-1, simultaneous reduction of Cr(VI) and degradation of phenol was observed. When Cr(VI) was present in the coculture, quantitative transformation of Cr(VI) into Cr(III) proceeded with simultaneous degradation of phenol. Cr(VI) reduction was correlated to phenol degradation in the coculture as demonstrated by a regression analysis of the cumulative Cr(VI) reduction and the cumulative phenol degradation. Both the rate and extent of Cr(VI) reduction and phenol degradation were significantly influenced by the population composition of the coculture. Although Cr(VI) reduction occurred as a result of E. coli metabolism, the rate of phenol degradation by P. putida may become a rate-limiting factor for Cr(VI) reduction at a low population ratio of P. putida to E. coli. Phenol degradation by P. putida was very susceptible to the presence of Cr(VI), whereas Cr(VI) reduction by E. coli was significantly influenced by phenol only when phenol was present at high concentrations (> 9 mM).
机译:在限定的Cr(VI)还原剂,大肠杆菌ATCC 33456和酚降解剂,恶臭假单胞菌DMP-1的共培养物中,观察到Cr(VI)的同时还原和酚的降解。当共培养物中存在Cr(VI)时,Cr(VI)定量转化为Cr(III)会同时降解苯酚。 Cr(VI)的减少与共培养物中的苯酚降解相关,如通过累积Cr(VI)减少和累积苯酚降解的回归分析所证明。 Cr(VI)还原的速率和程度以及苯酚的降解都受到共培养种群组成的显着影响。尽管Cr(VI)的减少是由于大肠杆菌的新陈代谢所致,但恶臭假单胞菌对苯酚的降解速率可能成为恶臭假单胞菌与大肠杆菌的低种群比例下Cr(VI)还原的限速因素。大肠杆菌。恶臭假单胞菌对苯酚的降解非常容易受到Cr(VI)的影响,而只有当苯酚以高浓度(> 9 mM)存在时,大肠杆菌对Cr(VI)的还原作用才会受到苯酚的显着影响。

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