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Physiological implications of class IIa bacteriocin resistance in Listeria monocytogenes strains

机译:IIA类菌株李斯特菌单核细胞增生菌株的生理意义

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High-level resistance to class IIa bacteriocins has been directly associated with the absent EIIABMan (MptA) subunit of the mannose-specific phosphoenolpyruvate-dependent phosphotransferase system (PTS) () in Listeria monocytogenes strains. Class IIa bacteriocin-resistant strains used in this study were a spontaneous resistant, L. monocytogenes B73-MR1, and a defined mutant, L. monocytogenes EGDe-mptA. Both strains were previously reported to have the EIIABMan PTS component missing. This study shows that these class IIa bacteriocin-resistant strains have significantly decreased specific growth and glucose consumption rates, but they also have a significantly higher growth yield than their corresponding wild-type strains, L. monocytogenes B73 and L. monocytogenes EGDe, respectively. In the presence of glucose, the strains showed a shift from a predominantly lactic-acid to a mixed-acid fermentation. It is here proposed that elimination of the EIIABMan in the resistant strains has caused a reduced glucose consumption rate and a reduced specific growth rate. The lower glucose consumption rate can be correlated to a shift in metabolism to a more efficient pathway with respect to ATP production per glucose, leading to a higher biomass yield. Thus, the cost involved in obtaining bacteriocin resistance, i.e. losing substrate transport capacity leading to a lower growth rate, is compensated for by a higher biomass yield.
机译:对IIA类菌株的高水平抗性抗性抗性抗性抗嗜酸盐蛋白酶(MPTA)亚基(MPTA)依赖于氏菌单核细胞增生菌株中依赖于甘露糖特异性磷酸丙酯依赖性磷酸酯体系(PTS)()。本研究中使用的IIA类抗菌菌株是自发性抗性L.单核细胞增生B73-MR1和定义的突变体,L.单核细胞元EGDE-MPTA。此前据报道,这两个菌株都缺失了eiiabman pts组件。本研究表明,这些抗性抗菌菌株的特异性生长和葡萄糖消耗率显着降低,但它们的增长产量显着高于其相应的野生型菌株,单核细胞增生B73和L.单核细胞增生EGDE。在葡萄糖存在下,菌株显示出从主要乳酸酸转移到混合酸发酵的偏移。这里提出,消除抗性菌株的Eiiabman引起了降低的葡萄糖消耗率和降低的特异性生长速度。较低的葡萄糖消耗率可以与对每个葡萄糖的ATP产生的更有效的途径相关,导致更高的生物质产量。因此,通过更高的生物质产量来补偿所涉及的含有细菌素抗性的成本,即导致较低的生长速率。

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