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首页> 外文期刊>Microbiology >Spatial interactions between subsurface bacterial colonies in a model system: a territory model describing the inhibition of Listeria monocytogenes by a nisin-producing lactic acid bacterium
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Spatial interactions between subsurface bacterial colonies in a model system: a territory model describing the inhibition of Listeria monocytogenes by a nisin-producing lactic acid bacterium

机译:模型系统中的地下细菌菌落之间的空间相互作用:一种揭幕模型,其描述了产生了芽孢杆菌的乳酸菌李斯特菌单核细胞增生

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Summary: The effect of spatial separation on interactions between subsurface bacterial colonies was tested using a model system: the inhibition of Listeria monocytogenes by nisin-producing and nisin-non-producing Lactococcus lactis subsp. lactis. Separation distance was controlled by altering the number of inoculum organisms within the agar. Mean separation distance was calculated by determining the mean volume available to each cell at the start of the experiment. Inhibition was assessed by comparing the growth of L. monocytogenes in pure culture with its growth in the presence of Lac. lactis subsp. lactis. Increasing the distance between colonies resulted in an exponential decrease in inhibition. When L. monocytogenes and Lac. lactis subsp. lactis colonies were within 100 μm of each other, the increase in cell numbers per L. monocytogenes colony was only 0.6 c.f.u. (which indicated some cells had become non-viable). This was a log reduction of 3.5 compared to the pure culture control. A separation distance of 1000 μm resulted in a L. monocytogenes colony growth increment of 2.5 × 102 c.f.u. per colony, a log reduction of 3.0 compared to the control. Increasing the separation distance to 3000 μm resulted in a L. monocytogenes colony growth increment of 1.3 × 106 c.f.u. per colony, a log reduction of 0.9 compared to the control. The effects of nisin and acidity were investigated by using a nisin-non-producing strain of Lac. lactis subsp. lactis and by buffering the medium. Data were obtained for the effect of separation on inhibition, as well as competition between colonies of the same species. The inhibition was mathematically described in terms of a simplified ‘territory’ model of immobilized bacterial growth. There was a strong qualitative agreement between the mathematical model and the experimental data. It was concluded that the phenomenon of propinquity is of important consideration when modelling and predicting microbial growth within solid food systems.
机译:发明内容:使用模型系统测试了空间分离对地下细菌菌落之间相互作用的影响:抑制碱单核细胞生成的Nisin-Monocytogens,乳腺癌和Nisin-不产生乳酸乳乳球菌患者。乳酸。通过改变琼脂内的接种生物的数量来控制分离距离。通过在实验开始时确定每个小区可用的平均体积来计算平均分离距离。通过将纯培养物中的L.单核细胞增生的生长与其在Lac存在下的生长中,评估抑制。乳酸亚水果。乳酸。增加菌落之间的距离导致抑制的指数降低。当L.单核细胞增生和LAC时。乳酸亚水果。乳酸菌落在彼此含量100μm之内,每1μl单核细胞元菌落的细胞数增加仅为0.6 c.u.u。 (表明一些细胞变得不可行)。与纯文化控制相比,这是3.5的降低。分离距离为1000μm,得到了2.5×102 C.u.u的L.单核细胞增生菌落生长增量。每个菌落,与控制相比,3.0的日志减少。将分离距离增加至3000μm,得到1磅单核细胞元菌落生长增量1.3×106 c.u.u。每个菌落,与控制相比,降低0.9的降低0.9。通过使用尼本生非生产的LAC菌株研究了氮杂度和酸度的影响。乳酸亚水果。乳酸,通过缓冲培养基。获得数据以分离对抑制的影响,以及相同物种的菌落之间的竞争。根据简化的“境内”的固定化细菌生长模型来抑制数学描述。数学模型与实验数据之间存在强大的定性协议。得出结论是,当在固体食品系统内建模和预测微生物生长时,预言的现象具有重要的考虑。

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