首页> 外文期刊>Applied Microbiology and Biotechnology >Biosurfactant-producing Bacillus are present in produced brines from Oklahoma oil reservoirs with a wide range of salinities
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Biosurfactant-producing Bacillus are present in produced brines from Oklahoma oil reservoirs with a wide range of salinities

机译:产生生物表面活性剂的芽孢杆菌存在于俄克拉荷马州油藏生产的盐水中,具有多种盐度

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摘要

Nine wells producing from six different reservoirs with salinities ranging from 2.1% to 15.9% were surveyed for presence of surface-active compounds and biosurfactant-producing microbes. Degenerate primers were designed to detect the presence of the surfactin/lichenysin (srfA3/licA3) gene involved in lipopeptide biosurfactant production in members of Bacillus subtilis/licheniformis group and the rhlR gene involved in regulation of rhamnolipid production in pseudomonads. Polymerase chain reaction amplification, cloning, and sequencing confirmed the presence of the srfA3/licA3 genes in brines collected from all nine wells. The presence of B. subtilis/licheniformis strains was confirmed by sequencing two other genes commonly used for taxonomic identification of bacteria, gyrA (gyrase A) and the 16S rRNA gene. Neither rhlR nor 16S rRNA gene related to pseudomonads was detected in any of the brines. Intrinsic levels of surface-active compounds in brines were low or not detected, but biosurfactant production could be stimulated by nutrient addition. Supplementation with a known biosurfactant-producing Bacillus strain together with nutrients increased biosurfactant production. The genetic potential to produce lipopeptide biosurfactants (e.g., srfA3/licA3 gene) is prevalent, and nutrient addition stimulated biosurfactant production in brines from diverse reservoirs, suggesting that a biostimulation approach for biosurfactant-mediated oil recovery may be technically feasible.
机译:调查了六个盐度从2.1%到15.9%的六个不同油藏生产的9口井中是否存在表面活性化合物和产生生物表面活性剂的微生物。设计简并引物来检测枯草芽孢杆菌/地衣形菌群成员中参与脂肽生物表面活性剂生产的表面活性素/地衣素(srfA3 / licA3)基因的存在,以及假单胞菌中参与调节鼠李糖脂产生的rhlR基因的存在。聚合酶链反应扩增,克隆和测序证实了从所有9口井收集的盐水中srfA3 / licA3基因的存在。通过对常用于细菌分类学鉴定的两个其他基因(gyrA(旋涡酶A)和16S rRNA基因)进行测序,确认了枯草芽孢杆菌/地衣菌菌株的存在。在任何盐水中均未检测到与假单胞菌相关的rhlR和16S rRNA基因。盐水中表面活性化合物的内在水平很低或未检测到,但是添加营养物可以刺激生物表面活性剂的产生。补充已知的产生生物表面活性剂的芽孢杆菌菌株以及养分,可以增加生物表面活性剂的产生。产生脂肽生物表面活性剂(例如srfA3 / licA3基因)的遗传潜力是普遍的,并且营养添加刺激了来自不同储层的盐水中生物表面活性剂的生产,这表明生物刺激剂介导的采油的生物刺激方法在技术上是可行的。

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