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Construction and Characterization of Escherichia coli O157:H7 Strains Expressing Firefly Luciferase and Green Fluorescent Protein and Their Use in Survival Studies .表达萤火虫荧光素酶和绿色荧光蛋白的大肠杆菌O157:H7菌株的构建、特性及其在存活研究中的应用
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Use of Luminescent Strains of Salmonella enteritidis To Monitor Contamination and Survival in Eggs.利用肠炎沙门氏菌发光菌株监测鸡蛋中的污染和存活情况。
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Bioluminescence in soybean root nodules: Demonstration of a general approach to assay gene expression in vivo by using bacterial luciferase.大豆根瘤中的生物发光:利用细菌荧光素酶检测体内基因表达的一般方法的验证。
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Characterization of In Vivo Reporter Systems for Gene Expression and Biosensor Applications Based on luxAB Luciferase Genes.基于 luxAB 荧光素酶基因的体内报告基因系统在基因表达和生物传感器应用中的特征分析。
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新型方法如何有助于发现更多关于食源性病原体的信息。

How novel methods can help discover more information about foodborne pathogens.

作者信息

Griffiths M W

机构信息

Department of Food Science, University of Guelph, Guelph, Ontario.

出版信息

Can J Infect Dis. 2000 May;11(3):142-53. doi: 10.1155/2000/364050.

DOI:10.1155/2000/364050
PMID:18159282
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2094761/
Abstract

Considerable emphasis is being placed on quantitative risk assessment modelling as a basis for regulation of trade in food products. However, for models to be accurate, information about the behaviour of potential pathogens in foods needs to be available. The question is how to obtain this knowledge in a simple and cost effective way. One technique that has great potential is the use of reporter bacteria which have been genetically modified to express a phenotype that can be easily monitored, such as light production in luminescent organisms. Bacteria carrying these (lux) genes can easily be detected using simple luminometers or more sophisticated low light imaging equipment.By monitoring light output from these bacteria over time, it can easily be determined if the organism is growing (resulting in an increase in light emission), is dead (causing a decrease in light production) or is injured (light output remains constant). The use of imaging systems allows the response of bioluminescent bacteria to be studied directly on the food, making the technique even more useful. Applications of bioluminescence are discussed below and include use as reporters of gene expression; biocide efficacy and antibiotic susceptibility; sub-lethal injury; adhesion and biofilm formation; the microbial ecology of foods; pathogenesis; and as biosensors.

摘要

目前,定量风险评估模型作为食品贸易监管的基础受到了相当大的重视。然而,要使模型准确,就需要掌握食品中潜在病原体行为的相关信息。问题在于如何以简单且经济高效的方式获取这些知识。一种极具潜力的技术是使用经过基因改造的报告细菌,这些细菌可表达易于监测的表型,例如发光生物中的发光现象。携带这些(lux)基因的细菌可以使用简单的发光计或更先进的低光成像设备轻松检测到。通过随时间监测这些细菌的光输出,能够很容易地确定该生物体是在生长(导致光发射增加)、已死亡(导致光产生减少)还是受到损伤(光输出保持恒定)。成像系统的使用使得能够直接在食品上研究生物发光细菌的反应,从而使该技术更加实用。下文将讨论生物发光的应用,包括用作基因表达的报告物;杀菌剂功效和抗生素敏感性;亚致死损伤;粘附和生物膜形成;食品的微生物生态学;发病机制;以及用作生物传感器。