首页> 外文期刊>Research in Microbiology >A transcriptional luxAB reporter fusion responding to fluorene in Sphingomonas sp. LB126 and its initial characterisation for whole-cell bioreporter purposes.
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A transcriptional luxAB reporter fusion responding to fluorene in Sphingomonas sp. LB126 and its initial characterisation for whole-cell bioreporter purposes.

机译:转录luxAB记者融合响应鞘鞘藻中的芴。 LB126及其针对全细胞生物报告者目的的初步表征。

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摘要

The promoter probe mini-Tn5-luxAB-tet was used to create a luxAB transcriptional fusion responding to fluorene in the fluorene utilising bacterium Sphingomonas sp. LB126. The mutant strain, named L-132, was impaired in fluorene utilisation and strongly emitted light upon addition of fluorene to the growth medium. L-132 was initially characterised and examined for its potential use as a whole-cell biosensor in the perspective of quantifying fluorene in environmental samples. Activity of the reporter gene as a response to fluorene was detectable after 30 min and was optimal after 4 h. A linear response to fluorene concentrations within the water solubility range was achieved, with a detection limit of 200 microg per litre. Besides fluorene, L-132 weakly responded to the polycyclic aromatic hydrocarbons phenanthrene and dibenzothiophene, whereas strong responses were obtained with 9-fluorenone, 9-hydroxyfluorene, phthalic acid and protocatechuic acid. The latter four compounds are metabolites formed in course of fluorene degradation, which suggested that a fluorene metabolite rather than fluorene itself was the true inducer of the luxAB fusion in L-132.
机译:使用细菌鞘氨醇单胞菌(Sphingomonas sp。),将启动子探针mini-Tn5-luxAB-tet用于产生对芴中的芴的响应的luxAB转录融合。 LB126。命名为L-132的突变菌株在芴利用方面受到损害,并且在向生长培养基中添加芴后会强烈发出光。最初对L-132进行了表征,并从量化环境样品中的芴的角度研究了其作为全细胞生物传感器的潜在用途。 30分钟后可检测到报告基因对芴的响应活性,4小时后最佳。在水溶性范围内,对芴浓度实现了线性响应,检出限为每升200微克。除了芴以外,L-132对多环芳烃菲和二苯并噻吩的反应较弱,而对9-芴酮,9-羟基芴,邻苯二甲酸和原儿茶酸的反应较强。后四种化合物是在芴降解过程中形成的代谢产物,这表明芴代谢产物而不是芴本身是L-132中luxAB融合的真正诱因。

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