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Effect of defined lipopolysaccharide core defects on resistance of Salmonella typhimurium to freezing and thawing and other stresses.

机译:确定的脂多糖核心缺陷对鼠伤寒沙门氏菌对冷冻和解冻及其他压力的抵抗力的影响。

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摘要

A family of mutants of Salmonella typhimurium with altered lipopolysaccharide (LPS) core chain lengths were assessed for sensitivity to freeze-thaw and other stresses. Deep rough strains with decreased chain length in the LPS core were more susceptible to novobiocin, polymyxin B, bacitracin, and sodium lauryl sulfate during growth, to ethylenediaminetetraacetic acid and sodium lauryl sulfate in resting suspension, and to slow and rapid freeze-thaw in water and saline, and these strains exhibited more outer membrane damage than the wild type or less rough strains. Variations in the LPS chain length did not dramatically affect the sensitivity of the strains to tetracycline, neomycin, or NaCl in growth conditions or the degree of freeze-thaw-induced cytoplasmic membrane damage. The deeper rough isogenic strains incorporated larger quantities of less-stable LPS and less protein into the outer membrane than did the wild type or less rough mutants, indicating that the mutations affected outer membrane synthesis or organization or both. Nikaido's model of the role of LPS and protein in determining the resistance of gram-negative bacteria to low-molecular-weight hydrophobic antibiotics is discussed in relation to the stress of freeze-thaw.
机译:评估了鼠伤寒沙门氏菌具有改变的脂多糖(LPS)核心链长度的突变体家族对冻融和其他压力的敏感性。 LPS核心中链长度减小的深层粗菌株在生长过程中更容易受到新霉素,多粘菌素B,杆菌肽和月桂基硫酸钠的影响,在悬浮液中对乙二胺四乙酸和月桂基硫酸钠的敏感性更高,并且在水中缓慢而快速地融化和盐水,这些菌株比野生型或粗糙菌株表现出更多的外膜损伤。 LPS链长度的变化并没有显着影响菌株在生长条件下对四环素,新霉素或NaCl的敏感性或冻融诱导的细胞质膜损伤的程度。与野生型或更粗糙的突变体相比,更深的粗糙等基因菌株在外膜中掺入了大量不稳定的LPS和更少的蛋白质,这表明突变影响外膜的合成或组织或两者。关于冻融压力,讨论了脂多糖和蛋白质在确定革兰氏阴性细菌对低分子量疏水性抗生素的抗性中的作用的Nikaido模型。

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