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Novel DNA Extraction and Preservation for Identification of Micro-organisms On-site using Novel Nucleic Acid Extraction Cards for the Oil and Gas Industry

机译:用于石油和天然气行业的新型核酸提取卡,用于现场鉴定微生物的新型DNA提取和保存

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Traditional microbiological methods based on culturing procedures such as the Most Probable Number (MPN) technique have been used for many years to monitor microbial numbers in oilfield samples. However, such methods are far from ideal as it is estimated that only 0.01-10% of all micro-organisms present in environmental samples are culturable by these methods. In addition, without further extensive procedures being carried out, such methods cannot identify the variety of micro-organisms in the sample. Molecular microbiological methods (MMM) negate such problems, providing information on the majority of micro-organisms present in an environmental sample. However, traditional MMM do have their drawbacks, particularly if employed on offshore oil installations. Such problems include microbial population changes occurring during transportation from the installation to the testing laboratory; additionally, the transportation and use of hazardous chemicals employed in traditional DNA extraction procedures limit the use of these methods on offshore installations. One new technology for the oil and gas industry, described as 'Nucleic Acid Extraction Card' (NAEC), offers a simple and convenient solution to sample transport and on-site DNA extraction problems. The cards are impregnated with chemicals that lyse the cells and preserve the extracted DNA, thus eliminating the need for hazardous DNA extraction / purification chemicals. Hence, the cards 'fix' the DNA onto the card so that the microbial population at the point of sampling is preserved, eradicating concerns of changes in microbial populations occurring during sample transport. The paper will discuss the mode of operation of the NAEC, trials with the cards on oilfield samples, comparisons with traditional DNA extraction procedures and recent developments with the technology. The paper will conclude with an example of how NAEC technology has been used to develop proactive solutions to microbiological problems in the oil & gas industry.
机译:基于培养程序的传统微生物学方法(例如,最有可能发生数(MPN)技术)已被用于监测油田样品中的微生物数年。但是,这种方法远非理想,因为据估计,这些方法只能培养出环境样品中存在的所有微生物的0.01-10%。另外,在没有进行进一步的广泛程序的情况下,这样的方法不能识别样品中的各种微生物。分子微生物学方法(MMM)消除了此类问题,提供了有关环境样品中存在的大多数微生物的信息。但是,传统的MMM确实有其缺点,尤其是在海上石​​油设施中使用时。这些问题包括从设备到测试实验室的运输过程中发生的微生物种群变化;此外,传统DNA提取程序中使用的危险化学品的运输和使用限制了这些方法在海上设施中的使用。石油和天然气行业的一项新技术被称为“核酸提取卡”(NAEC),它为样品运输和现场DNA提取问题提供了一种简单便捷的解决方案。卡片中充满了可溶解细胞并保存提取的DNA的化学物质,从而消除了对有害DNA提取/纯化化学物质的需求。因此,卡将DNA“固定”在卡上,从而保留了采样点的微生物种群,从而消除了在样品运输过程中微生物种群发生变化的担忧。本文将讨论NAEC的操作模式,在油田样品上使用卡片进行的试验,与传统DNA提取程序的比较以及该技术的最新发展。本文将以一个示例为例,说明如何使用NAEC技术为石油和天然气行业的微生物问题开发积极的解决方案。

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