首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Novel organic solvent-responsive expression vectors for biocatalysis: Application for development of an organic solvent-tolerant biodesulfurizing strain
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Novel organic solvent-responsive expression vectors for biocatalysis: Application for development of an organic solvent-tolerant biodesulfurizing strain

机译:用于生物催化的新型有机溶剂响应性表达载体:在开发有机溶剂耐受型生物脱硫菌株中的应用

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Biodesulfurization is an attractive alternative to hydrodesulfurization for lowering the sulfur content of petroleum products. However, the fuel oils are toxic to microorganisms, which have seriously hindered the application of biodesulfurization. Here, a solvent-tolerant desulfurizing bacterium, Pseudomonas putida DS23, was developed using one of the organic solvent-responsive expression vectors newly constructed for biocatalysis, in which gene expression could be regulated in an organic solvent-dependent fashion. The biodesulfurizing activity of P. putida DS23 could be induced by all the organic solvents used. P. putida DS23 cells induced by n-hexane were able to degrade 56% of 0.5. mM DBT in 12. h in the biphasic reaction containing 33.3% (v/v) n-hexane, while the strain induced by isopropyl β-d-1-thiogalactopyranoside could only degrade 26% of 0.5. mM DBT. These results suggested that use of the constructed organic solvent-responsive expression vectors can facilitate the biphasic biocatalysis involving organic solvents.
机译:为了降低石油产品的硫含量,生物脱硫是氢脱硫的有吸引力的替代方法。然而,燃料油对微生物有毒,这严重阻碍了生物脱硫的应用。在这里,使用为生物催化而新构建的一种有机溶剂响应型表达载体,开发了一种耐溶剂脱硫细菌恶臭假单胞菌DS23,其中可以以有机溶剂依赖性方式调节基因表达。所有使用的有机溶剂均可诱导恶臭假单胞菌DS23的生物脱硫活性。正己烷诱导的恶臭假单胞菌DS23细胞能够降解0.5的56%。在双相反应的12 h中,mM DBT包含33.3%(v / v)正己烷,而异丙基β-d-1-硫代半乳糖吡喃糖苷诱导的菌株只能降解0.5%的26%。毫米DBT。这些结果表明,使用构建的有机溶剂响应性表达载体可以促进涉及有机溶剂的双相生物催化。

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