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一株能够降解多种酚类化合物的新型 2,3-二甲苯酚利用假单胞菌分离株。

A novel 2,3-xylenol-utilizing Pseudomonas isolate capable of degrading multiple phenolic compounds.

机构信息

State Key Laboratory of Heavy Oil Processing and Center for Bioengineering & Biotechnology, China University of Petroleum, Qingdao 266555, China.

出版信息

Bioresour Technol. 2012 Jan;104:59-64. doi: 10.1016/j.biortech.2011.10.028. Epub 2011 Oct 20.

Abstract

This work characterized a novel 2,3-xylenol-utilizing Pseudomonas isolate XQ23. From 16S rRNA phylogenetic analysis, XQ23 was found to be a member of the Pseudomonas putida group. Most of its physiological characteristics also shared similarities to P. putida. Phenols were catabolized by the meta-cleavage pathway. The dependence of the specific growth rate on 2,3-xylenol concentration could be well fitted by the Haldane model, with the maximum occurring at the concentration around 180 mg l(-1). Kinetic parameters indicated that XQ23 was sensitive to 2,3-xylenol and had low affinity. Three patterns, i.e. constant, linear decline, and allometric decline, were proposed to describe the biomass yields of phenols during bacterial degradation and XQ23 under 2,3-xylenol culturing conditions followed the allometric pattern. In a mineral-salts medium supplemented with 180 mg l(-1) of 2,3-xylenol as the sole carbon and energy source, over 40% of 2,3-xylenol was turned into CO(2) to provide energy by complete oxidization.

摘要

这项工作对一株能利用 2,3-二甲酚的新型假单胞菌 XQ23 进行了研究。从 16S rRNA 系统发育分析来看,XQ23 属于恶臭假单胞菌群。它的大部分生理特性也与恶臭假单胞菌相似。苯酚通过间位裂解途径进行代谢。比生长速率对 2,3-二甲酚浓度的依赖性可以很好地用 Haldane 模型拟合,最大比生长速率出现在浓度约为 180mg/L 时。动力学参数表明,XQ23 对 2,3-二甲酚敏感,亲和力低。提出了三种模式,即恒态、线性下降和异速下降,来描述苯酚在细菌降解过程中的生物量产量,而在 2,3-二甲酚培养条件下,XQ23 遵循异速下降模式。在补充有 180mg/L 2,3-二甲酚的无机盐培养基中,2,3-二甲酚作为唯一的碳源和能源,超过 40%的 2,3-二甲酚被完全氧化转化为 CO2 以提供能量。

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