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A strain isolated from gas oil-contaminated soil displays chemotaxis towards gas oil and hexadecane

机译:从受粗柴油污染的土壤中分离出来的菌株对粗柴油和十六烷具有趋化性

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In this report we describe the isolation of a strain from soil contaminated with gas oil by taking bacteria from a chemotactic ring on gas oil-containing soft agar plates. Partial 16 S rDNA sequencing of the isolated strain showed 99.1% identify with Flavimonas oryzihabitans. It was not only able to degrade different aliphatic hydrocarbons but it was also chemotactic towards gas oil and hexadecane, as demonstrated by the use of three different chemotaxis methods, such as agarose plug and capillary assays and swarm plate analysis. In addition, the strain was chemotactic to a variety of carbon sources that serve as growth substrates, including glucose, arabinose, mannitol, glycerol, gluconate, acetate, succinate, citrate, malate, lactate and casaminoacids. This is the first report on chemotaxis of a hydrocarbon-degrading bacterium towards a pure alkane, such as hexadecane. The fact that environmental isolates show chemotaxis towards contaminant/s present in the site of isolation suggests that chemotaxis might enhance biodegradation by favouring contact between the degrading microorganism and its substrate.
机译:在此报告中,我们描述了通过从含瓦斯油的软琼脂平板上的趋化环中获取细菌来从受瓦斯油污染的土壤中分离菌株。分离的菌株的部分16 S rDNA测序显示与米黄杆菌鉴定99.1%。它不仅能够降解不同的脂肪烃,而且对瓦斯油和十六烷也具有趋化性,这通过使用三种不同的趋化性方法(例如琼脂糖塞和毛细管分析以及群体平板分析)得以证明。另外,该菌株对用作生长底物的多种碳源具有趋化性,包括葡萄糖,阿拉伯糖,甘露醇,甘油,葡萄糖酸盐,乙酸盐,琥珀酸盐,柠檬酸盐,苹果酸盐,乳酸盐和酪蛋白氨基酸。这是关于碳氢化合物降解细菌趋向于纯烷烃(如十六烷)趋化性的首次报道。环境分离株显示出对分离位点中存在的污染物的趋化性这一事实表明,趋化性可通过促进降解微生物与其底物之间的接触来增强生物降解。

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