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Estimation of total bacteria on mango surface by using ATP bioluminescence.

机译:利用ATP生物发光法估算芒果表面的总细菌。

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This paper presents a rapid ATP assay for monitoring the total bacterial load associated with mango fruit surface. Conventional methods such as total plate count for the determination of total microbial counts are time consuming and prone to contamination resulting in low accuracy. Thus the need for quick and accurate methods for determination of total microbial count has led to development of many rapid techniques such as ATP bioluminescence. In this study the potential of ATP bioluminescence method for the determination of total bacterial count on mango surface has been evaluated using two types of luminescence techniques based on fluorescence spectroscopy and bioluminescence. Various mechanical and chemical extraction processes were employed for the extraction of ATP from bacterial cells and the best extraction was achieved with 0.03 M TCA. Minimum level of detection of ATP using fluorescence spectrophotometer and bioluminometer was found to be 10-8 M and 10-13 M, respectively. This ATP concentration was correlated with the number of bacterial cells present on mango surface. The minimum level of detection of bacterial cells in fluorescence spectroscopy and bioluminescence was found to be 107 cfu/ml and 102 cfu/ml, respectively.
机译:本文提出了一种快速ATP检测方法,用于监测与芒果果实表面相关的总细菌负荷。诸如总板数之类的常规方法用于确定总微生物数是费时的,并且容易受到污染,从而导致准确性降低。因此,对用于确定总微生物数的快速准确方法的需求导致了许多快速技术的发展,例如ATP生物发光。在这项研究中,已经使用基于荧光光谱法和生物发光的两种发光技术评估了ATP生物发光法测定芒果表面细菌总数的潜力。采用各种机械和化学提取方法从细菌细胞中提取ATP,使用0.03 M TCA可获得最佳提取效果。荧光分光光度计和生物发光计检测到的ATP的最低水平分别为10 -8 M和10 -13 M。该ATP浓度与芒果表面上存在的细菌细胞的数量相关。荧光光谱法和生物发光法检测细菌细胞的最低水平分别为10 7 cfu / ml和10 2 cfu / ml。

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