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首页> 外文期刊>Applied Microbiology >High Stability and Fast Recovery of Expression of the TOL Plasmid-Carried Toluene Catabolism Genes of Pseudomonas putida mt-2 under Conditions of Oxygen Limitation and Oscillation
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High Stability and Fast Recovery of Expression of the TOL Plasmid-Carried Toluene Catabolism Genes of Pseudomonas putida mt-2 under Conditions of Oxygen Limitation and Oscillation

机译:氧限制和振荡条件下恶臭假单胞菌mt-2的TOL质粒携带的甲苯分解代谢基因的表达的高稳定性和快速恢复

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Pseudomonas putida mt-2 harbors the TOL plasmid (pWWO), which contains the genes encoding the enzymes necessary to degrade toluene aerobically. The xyl genes are clustered in the upper operon and encode the enzymes of the upper pathway that degrade toluene to benzoate, while the genes encoding the enzymes of the lower pathway ( meta -cleavage pathway) that are necessary for the conversion of benzoate to tricarboxylic acid cycle intermediates, are encoded in a separate operon. In this study, the effects of oxygen availability and oscillation on the expression of catabolic genes for enzymes involved in toluene degradation were studied by using P. putida mt-2 as model bacterium. Quantitative reverse transcription-PCR was used to detect and quantify the expression of the catabolic genes xylM (a key gene of the upper pathway) and xylE (a key gene of the lower pathway) in cultures of P. putida mt-2 that were grown with toluene as a carbon source. Toluene degradation was shown to have a direct dependency on oxygen concentration, where gene expression of xylM and xylE decreased due to oxygen depletion during degradation. Under oscillating oxygen concentrations, P. putida mt-2 induced or downregulated xylM and xylE genes according to the O_(2) availability in the media. During anoxic periods, P. putida mt-2 decreased the expression of xylM and xylE genes, while the expression of both xylM and xylE genes was immediately increased after oxygen became available again in the medium. These results suggest that oxygen is not only necessary as a cosubstrate for enzyme activity during the degradation of toluene but also that oxygen modulates the expression of the catabolic genes encoded by the TOL plasmid.
机译:恶臭假单胞菌mt-2带有TOL质粒(pWWO),该质粒包含编码需氧降解甲苯的酶的基因。 xyl基因聚集在上部操纵子中,编码将甲苯降解为苯甲酸酯的上部途径的酶,而编码下部途径(间位裂解途径)的酶的基因是苯甲酸酯转化为三羧酸所必需的循环中间体在单独的操纵子中编码。在这项研究中,以恶臭假单胞菌mt-2为模型细菌,研究了氧的利用和振荡对参与甲苯降解的酶的分解代谢基因表达的影响。定量逆转录PCR用于检测和定量生长的恶臭假单胞菌mt-2培养物中分解代谢基因xylM(上部途径的关键基因)和xylE(下部途径的关键基因)的表达以甲苯为碳源。甲苯降解显示出直接依赖于氧浓度,其中xylM和xylE的基因表达由于降解过程中的氧消耗而降低。在振荡的氧气浓度下,恶臭假单胞菌mt-2根据培养基中O_(2)的可用性诱导或下调xylM和xylE基因。在缺氧期间,恶臭假单胞菌mt-2降低了xylM和xylE基因的表达,而在培养基中再次提供氧气后,xylM和xylE基因的表达立即增加。这些结果表明,氧不仅在甲苯降解期间作为酶活性的共底物是必需的,而且氧调节由TOL质粒编码的分解代谢基因的表达。

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