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Effects of substrate induction and added carbon source on phenol degradation by Pseudomonas putida

机译:底物诱导和添加碳源对恶臭假单胞菌降解苯酚的影响

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The specific growth rates of Pseudomonas putida CCRC14365 abstracted from five different phases (lag, log, late-exponential, stationary, and death), along with its specific rates of phenol degradation, were determined. It was found that cells induced with 100 mg(.)L(-1) of phenol could completely degrade phenol (100 mg(.)L(-1)) within 18 to 26 h, but that it could be degraded within 23 to 33 It when non-induced cultures were used. In addition, cells harvested from the late-exponential phase were the most effective ones for achieving complete consumption of phenol in both adaptation cases. In contrast to non-induced cells, induced cells had lower specific degradation rates for phenol although their specific growth rates were higher. In other words, the substrate-induced cells produced more biomass that enhanced degradation efficiency although they exhibited a lower degradation activity. To offset the toxicity of phenol and the production of more active cells, the effect of an added carbon source, glucose, on phenol degradation was finally investigated using non-induced cells.
机译:确定了从五个不同阶段(滞后,对数,后期指数,平稳和死亡)提取的恶臭假单胞菌CCRC14365的特定生长率,以及其苯酚的降解率。发现用100 mg(。)L(-1)苯酚诱导的细胞可以在18至26 h内完全降解苯酚(100 mg(。)L(-1)),但可以在23至26 h内降解。 33当使用非诱导培养时。此外,在两种适应情况下,从指数后期收获的细胞是完全消耗苯酚的最有效细胞。与未诱导的细胞相反,诱导的细胞具有较低的苯酚比降解速率,尽管它们的比生长速率更高。换句话说,尽管底物诱导的细胞表现出较低的降解活性,但它们产生了更多的生物质,这些生物量提高了降解效率。为了抵消苯酚的毒性和更多活性细胞的产生,最终使用非诱导细胞研究了添加的碳源葡萄糖对苯酚降解的影响。

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