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Evaluation of Propidium Monoazide as a Tool to Differentiate Live from Dead MIC Microorganisms

机译:评估单叠氮丙啶作为区分存活的微生物和死的MIC微生物的工具

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We describe the advancement of an activity-based qPCR assay which can distinguish live from dead corrosion influencing microorganisms in oil and gas pipeline environments. While the current body of knowledge is expanding for the types of microbial organisms present in waters used for natural gas and oil production, there is scant information on the activity of these potentially deleterious or beneficial organisms in source waters and produced waters associated with the industry. This assay was developed using pure cultures of sulfate reducing bacteria (SRB), sulfate reducing Archaea (SRA), iron oxidizing bacteria (IOB), denitrifying bacteria (DNB), and archaea (AR). Propidium monoazide-qPCR was then adapted to differentiate live from dead bacteria Pseudomonas putida bacterial cells once immobilized on membrane filters. The assay has been validated with mock environmental samples, where produced waters of various turbidity and origin have been sterilized and spiked with known quantities of living and dead P.putida. We discuss the limitations and possible future optimization methods for Propidium monazide-qPCR techniques in the industry.
机译:我们描述了基于活动的qPCR分析的进展,该分析可以区分在石油和天然气管道环境中的活微生物与死腐蚀影响微生物。尽管当前的知识范围正在扩大用于天然气和石油生产的水中存在的微生物的类型,但有关这些潜在有害或有益生物在原水和与工业相关的生产水中的活动的信息很少。此测定法是使用硫酸盐还原细菌(SRB),硫酸盐还原古细菌(SRA),铁氧化细菌(IOB),反硝化细菌(DNB)和古细菌(AR)的纯培养物开发的。然后将单叠氮化丙锭qqPCR固定在膜滤膜上之后,就可以将活细菌与恶臭假单胞菌的活细胞区分开来。该测定方法已通过模拟环境样品进行了验证,其中对各种浊度和来源的采出水进行了灭菌处理,并掺入了已知数量的生和死腐烂假单胞菌。我们讨论了工业上叠氮丙锭qPCR技术的局限性和未来可能的优化方法。

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