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Swarming populations ofSalmonella represent a unique physiological state coupled to multiple mechanisms of antibiotic resistance

机译:沙门氏菌群呈群体分布,代表独特的生理状态,再加上多种抗生素耐药性机制

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Salmonella enterica serovar Typhimurium is capable of swarming over semi-solid surfaces. Although its swarming behavior shares many readily observable similarities with other swarming bacteria, the phenomenon remains somewhat of an enigma in this bacterium since some attributes skew away from the better characterized systems. Swarming is quite distinct from the classic swimming motility, as there is a prerequisite for cells to first undergo a morphological transformation into swarmer cells. In some organisms, swarming is controlled by quorum sensing, and in others, swarming has been shown to be coupled to increased expression of important virulence factors. Swarming in serovar Typhimurium is coupled to elevated resistance to a wide variety of structurally and functionally distinct classes of antimicrobial compounds. As serovar Typhimurium differentiates into swarm cells, the pmrHFIJKLM operon is up-regulated, resulting in a more positively charged LPS core. Furthermore, as swarm cells begin to de-differentiate, the pmr operon expression is down-regulated, rapidly reaching the levels observed in swim cells. This is one potential mechanism which confers swarm cells increased resistance to antibiotics such as the cationic antimicrobial peptides. However, additional mechanisms are likely associated with the cells in the swarm state that confer elevated resistance to such a broad spectrum of antimicrobial agents.
机译:肠炎沙门氏菌鼠伤寒沙门氏菌能够在半固体表面上聚集。尽管其群集行为与其他群集细菌具有许多容易观察到的相似之处,但由于某些属性偏离了特征更好的系统,因此这种细菌仍然有些谜。成群与传统的游泳运动完全不同,因为先要先将细胞形态转变为成群细胞,这是前提。在某些生物中,群体是通过群体感应来控制的,而在另一些生物中,群体则显示出与重要毒力因子表达的增加有关。鼠伤寒血清群中的大量繁殖与对多种结构和功能不同类型的抗菌化合物的耐药性增强有关。由于鼠伤寒血清能分化成群细胞,因此pmrHFIJKLM操纵子被上调,导致LPS核心带正电。此外,随着群细胞开始去分化,pmr操纵子表达被下调,迅速达到在游泳细胞中观察到的水平。这是赋予群细胞增加对抗生素如阳离子抗微生物肽的抗性的一种潜在机制。但是,其他机制可能与呈群体状态的细胞有关,赋予了这种广谱抗微生物剂更高的耐药性。

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