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首页> 外文期刊>Journal of Rapid Methods and Automation in Microbiology >Growth response and recovery in selective media of a lysine auxotroph Escherichia coli for a rapid microbiological assay
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Growth response and recovery in selective media of a lysine auxotroph Escherichia coli for a rapid microbiological assay

机译:赖氨酸营养缺陷型大肠杆菌的生长反应和在选择性培养基中的恢复,用于快速微生物检测

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Human foods and animal feeds vary in their amino acid availability based upon the nature of the protein source and subsequent processing treatments to which the source may have been subjected during manufacture. In this study, growth and recovery of an Escherichia coli lysine auxotroph assay organism was tested in the presence of an antibiotic and antifungal supplemented medium previously developed. Overall growth rate comparisons in amended liquid minimal media showed that addition of antistatic agents did not alter the growth rate of the indicator strain and that it is independent of lysine concentration. Six different animal feeds were studied to determine the potential background contribution of indigenous feed Escherichia coli and whether the selective medium would suppress these organisms. Recovery of the indicator strain used for the rapid bacterial lysine assay was above 94% in all feed suspensions. In addition to this, indigenous microfiora of the animal feeds was unable to grow in the presence of the antistatic agents selected. Microbial growth measured as agar plate colonies from short (1 week) and long term storage (6 months)feeds were completely suppressed on the antibiotic supplemented plates after 24 h of incubation. This result confirms that the amendments will suppress the growth of indigenous feed E. coli populations during the time frame typically used to conduct the rapid bacterial lysine assay with the E. coli lysine auxotroph without altering the growth rate response of the auxotroph.
机译:人类食品和动物饲料的氨基酸利用率会根据蛋白质来源的性质以及在制造过程中可能受到的后续加工处理而有所不同。在这项研究中,在先前开发的抗生素和抗真菌补充培养基的存在下测试了大肠杆菌赖氨酸营养缺陷型检测生物的生长和恢复。在改良的液体基本培养基中的总体生长速率比较表明,添加抗静电剂不会改变指示菌株的生长速率,并且它与赖氨酸浓度无关。对六种不同的动物饲料进行了研究,以确定土著饲料大肠杆菌的潜在背景贡献,以及选择性培养基是否会抑制这些生物。在所有饲料悬浮液中,用于快速细菌赖氨酸测定的指示菌株的回收率均高于94%。除此之外,在所选择的抗静电剂的存在下,动物饲料的原生微生物不能生长。孵育24小时后,补充抗生素的平板上以短期(1周)和长期储存(6个月)进食的琼脂平板菌落衡量的微生物生长被完全抑制。该结果证实,这些修正将抑制通常用于用大肠杆菌赖氨酸营养缺陷型进行快速细菌赖氨酸测定的时间框架内的土著饲料大肠杆菌种群的生长,而不会改变营养缺陷型的生长速率响应。

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