首页> 外文期刊>Environmental microbiology >The ttgGHI solvent efflux pump operon of Pseudomonas putida DOT-T1E is located on a large self-transmissible plasmid
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The ttgGHI solvent efflux pump operon of Pseudomonas putida DOT-T1E is located on a large self-transmissible plasmid

机译:恶臭假单胞菌DOT-T1E的ttgGHI溶剂外排泵操纵子位于一个大的自传质粒上

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摘要

Pseudomonas putida DOT-T1E is a solvent-tolerant strain able to grow in the presence of > 1% (v/v) toluene in the culture medium. A set of multidrug efflux pumps have been found to play a major role in the tolerance of this bacterium to organic solvents (Rojas et al., J Bacteriol 183: 3967-3973). In the course of studies of the mechanisms underlying solvent tolerance in DOT-T1E, we isolated a spontaneous solvent-sensitive mutant derivative which had lost the genes encoding the TtgGHI efflux pump, the most important extrusion element in quantitative terms. Genomic comparisons between the mutant and its parental strain by microarray analysis revealed that in addition to the ttgVW-ttgGHI gene cluster, another group of genes, highly similar to those found in the Tn4653A and ISPpu12 transposable elements of the TOL plasmid pWW0 from P. putida mt-2, were also absent from this strain. Further analysis demonstrated that strain DOT-T1E harboured a large plasmid (named pGRT1) that was lost from the solvent-sensitive mutant. Mapping analysis revealed that the ttgVW-ttgGHI genes and the Tn4653A-like transposon are borne by the pGRT1 plasmid. Plasmid pGRT1 is highly stable and its frequency of loss is below 10(-8) per cell per generation under a variety of growth conditions, including nutritional and physical stresses. The pGRT1 plasmid is self-transmissible, and its acquisition by the toluene-sensitive P. putida KT2440 and Pseudomonas aeruginosa PAO1 increased the recipient's tolerance to toluene up to levels similar to those exhibited by P. putida DOT-T1E. We discuss the importance and potential benefits of this plasmid for the development of bacteria with enhanced solvent tolerance, and its potential impact for bioremediation and whole-cell biotransformations.
机译:恶臭假单胞菌DOT-T1E是一种耐溶剂菌株,能够在培养基中> 1%(v / v)甲苯的情况下生长。已经发现一组多药外排泵在该细菌对有机溶剂的耐受性中起主要作用(Rojas等,J Bacteriol 183:3967-3973)。在研究DOT-T1E中潜在的溶剂耐受性机理的过程中,我们分离了自发的溶剂敏感性突变体衍生物,该衍生物失去了编码TtgGHI外排泵的基因,而该基因在数量上是最重要的挤出元件。通过微阵列分析对突变体及其亲本菌株进行基因组比较,发现除ttgVW-ttgGHI基因簇外,另一组基因与在恶臭假单胞菌TOL质粒pWW0的Tn4653A和ISPpu12转座因子中发现的基因高度相似。该菌株也没有mt-2。进一步的分析表明,菌株DOT-T1E含有一个大质粒(命名为pGRT1),该质粒从溶剂敏感性突变体中丢失。映射分析表明,ttGVW-ttgGHI基因和类似Tn4653A的转座子由pGRT1质粒携带。质粒pGRT1是高度稳定的,在各种生长条件下,包括营养和身体压力,其丢失频率每代细胞每代低于10(-8)。 pGRT1质粒是可自我传播的,通过对甲苯敏感的恶臭假单胞菌KT2440和铜绿假单胞菌PAO1的获取,受体对甲苯的耐受性提高到与恶臭假单胞菌DOT-T1E相似的水平。我们讨论了该质粒对提高细菌耐受性的细菌的发展的重要性和潜在益处,以及其对生物修复和全细胞生物转化的潜在影响。

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