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Rapid detection and respirometric profiling of aerobic bacteria on panels of selective media.

机译:选择性培养基面板上有氧细菌的快速检测和呼吸谱分析。

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Aims. To evaluate high-throughput optical oxygen microrespirometry for selective detection and predictive identification of aerobic bacteria. Methods and Results. Using GreenLight probe, standard 384-well plates and time-resolved fluorescence reader, a representative panel of 16 partially selective media and 9 aerobic bacteria (Escherichia coli, Bacillus cereus, Staphylococcus aureus, Campylobacter jejuni, Yersinia enterocolitica, Pseudomonas aeruginosa, Streptococcus pyogenes, Salmonella Typhimurium and Listeria innocua) were analysed. For each medium, bacterial strain and dilution, growth profiles were recorded, from which calibrations, doubling/generation times and growth patterns in different media were determined. Analytical performance, selectivity and general usability of the method were assessed, and mixed bacterial cultures were analysed. Conclusion. The microrespirometry platform facilitates simple, real-time detection and predictive identification of aerobic bacteria by looking at the patterns of their growth and respiration in several media and determining their growth and doubling times. Significance and Impact of the Study. The new screening method can be used for routine microbiological analysis and testing of aerobic bacterial cultures as well as complex food, environmental and clinical samples. copyright 2012 The Society for Applied Microbiology.
机译:目的评估高通量光学氧气显微呼吸测定法对需氧菌的选择性检测和预测鉴定。方法和结果。使用GreenLight探针,标准的384孔板和时间分辨荧光读取器,16个部分选择性培养基和9个好氧细菌(大肠杆菌,蜡状芽孢杆菌,金黄色葡萄球菌,空肠弯曲杆菌,耶尔森氏菌肠球菌,铜绿假单胞菌,脓链球菌,致脓链球菌)的代表性面板分析了鼠伤寒沙门氏菌和无病李斯特菌。对于每种培养基,细菌菌株和稀释度,记录其生长概况,从中确定校准,倍增/产生时间和不同培养基中的生长方式。评估了该方法的分析性能,选择性和通用性,并对混合细菌培养物进行了分析。结论。微呼吸计测平台通过查看好氧细菌在几种培养基中的生长和呼吸模式,并确定其生长和倍增时间,可以方便,实时地检测和预测需氧细菌。研究的意义和影响。这种新的筛选方法可用于常规微生物分析和需氧细菌培养以及复杂食品,环境和临床样品的测试。版权所有2012应用微生物学学会。

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