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A single point mutation in the listerial betL σA-dependent promoter leads to improved osmo- and chill-tolerance and a morphological shift at elevated osmolarity

机译:依赖于李斯特菌betLσA的启动子中的单点突变可提高渗透压和耐寒性,并在渗透压升高时发生形态变化

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Betaine uptake in Listeria monocytogenes is mediated by three independent transport systems, the simplest of which in genetic terms is the secondary transporter BetL. Using a random mutagenesis approach, based on the E. coli XL1 Red mutator strain, we identified a single point mutation in a putative promoter region upstream of the BetL coding region which leads to a significant increase in betL transcript levels under osmo- and chill-stress conditions and a concomitant increase in stress tolerance. Furthermore, the mutation appears to counter the heretofore unreported “twisted” cell morphology observed for L. monocytogenes grown at elevated osmolarities in tryptone soy broth.
机译:单核细胞增生李斯特菌中甜菜碱的摄取是由三个独立的转运系统介导的,从遗传学角度来看,最简单的是二级转运蛋白BetL。使用基于E的随机诱变方法。大肠杆菌XL1 Red突变菌株,我们在BetL编码区上游的推定启动子区中发现了一个单点突变,该突变导致在渗透和寒冷胁迫条件下betL转录水平显着增加,并伴随压力增加公差。此外,该突变似乎与迄今未观察到的针对 L的未报告的“扭曲”细胞形态相反。胰蛋白so大豆肉汤中渗透压升高时生长的单核细胞增生李斯特菌。

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