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首页> 外文期刊>American Journal of Biochemistry and Biotechnology >The Contamination Degree of Characteristic Fungi in Jet Fuel Detected by ATP Bioluminescence
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The Contamination Degree of Characteristic Fungi in Jet Fuel Detected by ATP Bioluminescence

机译:ATP生物发光检测航空燃料中特征性真菌的污染程度

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摘要

Adenosine Triphosphate (ATP) lysate of the characteristic fungi in jet fuel was screened and three fluorescein-luciferase systems were compared in the paper. The correlation between ATP bioluminescence and traditional plate count for measuring the number of microorganism was also investigated and then a method of detecting the contamination degree of the characteristic fungi of jet fuel by ATP bioluminescence were initially established. The results show that the effect of ATP extraction taking surfactant Benzyldimethylhexadecylammonium chloride (BAC) as the microbial lysate was optimal and the optimal concentration and the action time were 0.15% and 30s respectively; The fluorescein-luciferase system after screening has a good detection limit, up to 10-15mol ATP; using ATP bioluminescence and traditional plate method to measure the microbial quantity, they have good correlation. Utilizing ATP bioluminescence to detect the contamination degree of the characteristic fungi in jet fuel can shorten the test time to 10min, which is suitable for rapid detection and has good application prospects.
机译:筛选了喷气燃料中典型真菌的三磷酸腺苷(ATP)裂解物,并比较了三种荧光素-荧光素酶系统。研究了ATP生物发光与传统平板计数法对微生物数量的相关性,并初步建立了利用ATP生物发光检测航空燃料特征真菌污染程度的方法。结果表明,以表面活性剂苄基二甲基十六烷基氯化铵(BAC)为微生物裂解液,ATP提取效果最佳,最佳浓度为0.15%,作用时间为30s。筛选后的荧光素-荧光素酶系统具有良好的检出限,最高可达10-15mol ATP;采用ATP生物发光法和传统平板法测定微生物数量,两者具有良好的相关性。利用ATP生物发光技术检测航空燃料中特征性真菌的污染程度,可将检测时间缩短至10min,适合快速检测,具有良好的应用前景。

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