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l-Cysteine is required for induced antibiotic resistance in actively swarming Salmonella enterica serovar Typhimurium

机译:L-半胱氨酸是在积极培养的沙门氏菌肠道血吸虫中诱导抗生素抗性所必需的

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Swarm-cell differentiation in Salmonella enterica serovar Typhimurium (S. typhimurium) results in a biosynthetic mode of growth, despite growing on a rich medium, and cells that have elevated antibiotic resistance. These phenotypes are not a prerequisite for swarm motility. By blocking the switch to anabolic growth using amino acid auxotrophs and screening for the presence of elevated antibiotic resistance in the swarm state, we found that cysteine biosynthesis is crucial for complete swarm-cell differentiation. Mutants were made in each cys biosynthetic operon and all had decreased antibiotic resistance in the swarm state, while swim-cell resistance remained the same as that of wild-type cells. This swarm-state-specific decreased resistance in Δcys strains could be restored to wild-type levels by the addition of cysteine to swarm medium. Two regulatory mutants, ΔcysB and ΔcysE, failed to swarm unless cysteine was supplemented to the medium. We show that all CysB-responsive operons involved in cysteine biosynthesis are upregulated in the swarm state, even though swarm cells are cultivated on a medium that represses cysteine biosynthesis in the swim state. While swarm medium has sufficient cysteine for growth of S. typhimurium, it does not contain enough for swarm-cell differentiation. We hypothesize that in these cells, the additional cysteine requirement is for use in pathways not directly related to cell growth.
机译:尽管富含培养基和抗生素抗性升高的细胞生长,但在沙门氏菌肠道毒蕈中的群细胞分化导致生物合成的生长模式。这些表型不是群体运动的先决条件。通过使用氨基酸滋润营养和筛选在群体状态下筛选抗生素抗性的筛选和筛选切换,我们发现半胱氨酸生物合成对于完全群细胞分化至关重要。突变体是在每种CYS生物合成型型器中进行的,并且所有人都在群状态下降低了抗生素抗性,而游泳池抵抗与野生型细胞相同。通过向群体培养基加入半胱氨酸,可以将这种群体特异性的抗性降低到野生型水平。否则除非将半胱氨酸施加到培养基中,否则两种调节突变体ΔCysb和ΔCyse未能培养。我们表明,在群状态下,涉及半胱氨酸生物合成中涉及的所有CysB响应式操纵子,即使在抑制在游泳状态下的半胱氨酸生物合成的培养基上培养了群细胞。虽然育龄培养培养有足够的半胱氨酸,但它不含足足以进行群细胞分化。我们假设在这些细胞中,额外的半胱氨酸要求用于与细胞生长无直接相关的途径。

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