首页> 外文期刊>Journal of Microbiological Methods >Spontaneous bacteriocin resistance in Listeria monocytogenes as a susceptibility screen for identifying different mechanisms of resistance and modes of action by bacteriocins of lactic acid bacteria.
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Spontaneous bacteriocin resistance in Listeria monocytogenes as a susceptibility screen for identifying different mechanisms of resistance and modes of action by bacteriocins of lactic acid bacteria.

机译:单核细胞增生李斯特氏菌(Listist monocytogenes)的自发性细菌素耐药性,作为鉴定乳酸菌细菌素的不同耐药机制和作用方式的敏感性筛选。

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摘要

A practical system was devised for grouping bacteriocins of lactic acid bacteria (LAB) based on mode of action as determined by changes in inhibitory activity to spontaneously-acquired bacteriocin resistance (BacR). Wild type Listeria monocytogenes 39-2 was sensitive to five bacteriocins produced by 3 genera of LAB: pediocin PA-1 and pediocin Bac3 (Pediococcus), lacticin FS97 and lacticin FS56 (Lactococcus), and curvaticin FS47 (Lactobacillus). A spontaneous BacR derivative of L. monocytogenes 39-2 obtained by selective recovery against lacticin FS56 provided complete resistance to the bacteriocin made by Lactococcus lactis FS56. The lacticin FS56-resistant strain of L. monocyotgenes 39-2 was also cross-resistant to curvaticin FS47 and pediocin PA-1, but not to lacticin FS97 or pediocin Bac3. The same pattern of cross-resistance was also observed with BacR isolates obtained with L. monocytogenes Scott A-2. A spontaneous mutation that renders a strain cross-resistant to different bacteriocins indicates that they share a common mechanism of resistance due to similar modes of action of the bacteriocins. Spontaneous resistance was acquired to other bacteriocins (in aggregate) by following the same procedure against which the BacR strain was still sensitive. In subsequent challenge assays, mixtures of bacteriocins of different modes of action provided greater inhibition than mixtures of bacteriocins of the same mode of action (as determined by our screening method). This study identifies a methodical approach to classify bacteriocins into functional groups based on mechanism of resistance (i.e., mode of action) that could be used for identifying the best mixture of bacteriocins for use as biopreservatives. All rights reserved, Elsevier.
机译:设计了一种实用的系统,根据作用方式对乳酸菌(LAB)的细菌素进行分组,该作用方式是通过对自发获得的细菌素耐药性(Bac R )的抑制活性的变化来确定的。野生型单核细胞增生李斯特菌 39-2对LAB的3个属产生的5种细菌素敏感:pediocin PA-1和pediocin Bac3(Pediococcus ),乳酸菌FS97和乳酸菌FS56( 乳球菌)和姜黄素FS47(乳杆菌)。 L的自发Bac R 衍生物。通过选择性回收针对乳酸菌FS56的单核细胞增生因子 39-2提供了对乳酸乳球菌FS56制成的细菌素的完全抗性。 L的乳酸菌对FS56的抗性菌株。单核细胞基因 39-2对curvaticin FS47和pediocin PA-1也有交叉耐药性,但对lacticin FS97或pediocin Bac3没有交叉耐药性。用 L获得的Bac R 分离株也观察到相同的交叉抗性模式。单核细胞增生症 Scott A-2。使菌株对不同细菌素产生交叉抗性的自发突变表明,由于细菌素的相似作用方式,它们具有共同的抗性机制。遵循与Bac R 菌株仍然敏感的相同程序,获得对其他细菌素(总体而言)的自发抗性。在随后的攻击试验中,不同作用方式的细菌素混合物比相同作用方式的细菌素混合物(通过我们的筛选方法确定)提供了更大的抑制作用。这项研究确定了一种基于抗性机制(即作用方式)将细菌素分类为功能组的方法性方法,可用于确定用作生物防腐剂的最佳细菌素混合物。保留所有权利,Elsevier。

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