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首页> 外文期刊>Journal of applied microbiology >Acetoin production as an indicator of growth and metabolic inhibition ofListeria monocytogenes
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Acetoin production as an indicator of growth and metabolic inhibition ofListeria monocytogenes

机译:乙醛生成是单核细胞增多性李斯特菌生长和代谢抑制的指标

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It has been shown that Listeria monocytogenes produces acetoin from glucose under aerobic conditions, A defined medium with glucose as the sole carbon source was used in an aerobic shake flask culture to reliably produce acetoin, Acetoin, the reactive compound in the Voges-Proskauer test, was assayable in the medium and was used to quantify the metabolic response when inhibitors were added to the medium, Inhibitors such as lactic, acetic, propionic and benzoic acids were used to demonstrate the utility of acetoin production as an indicator of metabolic disruption. With increasing levels of inhibitor, the metabolic and growth responses were measured by acetoin production and optical density change, respectively, Both measurements decreased in a similar manner with increasing inhibitor concentrations. The data also showed the apparent mode of action of the inhibitors, A bacteriostatic effect was observed for the protonated organic acids, acetic (4 mmol l(-1)) and propionic (4 mmol l(-1)), whereas protonated lactic (4 mmol l(-1)) and benzoic (0.16 mmol l(-1)) acids gave an irreversible (apparent bacteriocidal) effect. Lactic, acetic, and propionic acids showed stimulation of metabolic activity at low concentrations, but benzoic did not. Acetoin production is a novel method for quantifying and assessing the mode of action of inhibitors against L. monocytogenes. This system can be used to screen inhibitors for applications in food safety.
机译:研究表明,单核细胞增生性李斯特菌在好氧条件下会从葡萄糖中产生乙醛酸。在有氧摇瓶培养物中使用了以葡萄糖为唯一碳源的特定培养基,可以可靠地产生乙醛酸,乙酰丁酸,在Voges-Proskauer试验中是活性化合物,在培养基中可检测到乙醛,并用于定量当向培养基中添加抑制剂时的代谢反应。抑制剂如乳酸,乙酸,丙酸和苯甲酸被用来证明乙酰辅酶的产生可作为代谢破坏的指标。随着抑制剂水平的增加,分别通过乙酰生成素和光密度变化来测量代谢和生长反应。两种测量结果均随着抑制剂浓度的增加而以类似的方式降低。数据还显示了抑制剂的明显作用方式。对质子化的有机酸,乙酸(4 mmol l(-1))和丙酸(4 mmol l(-1))观察到了抑菌作用,而质子化的乳酸( 4 mmol l(-1))和苯甲酸(0.16 mmol l(-1))酸产生不可逆的(表观杀菌作用)。乳酸,乙酸和丙酸在低浓度下显示出对代谢活性的刺激,而苯甲酸则没有。乙酰丙酮的产生是用于定量和评估抑制剂对单核细胞增生李斯特氏菌的作用方式的新方法。该系统可用于筛选用于食品安全的抑制剂。

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