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Repair of Injury in Freeze-Dried Salmonella anatum

机译:冻干沙门氏菌损伤的修复

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摘要

Repair of injury induced by freeze-drying Salmonella anatum in nonfat milk solids occurred rapidly after rehydration. Injury in surviving cells was defined as the inability to form colonies on a plating medium containing deoxycholate. Death was defined as inability to form colonies in the same medium without this selective agent. The rate of repair of injury was reduced by lowering the temperature from 35 C to 10 C and was extremely low at 1 C. Repair was independent of influence of pH between 6.0 and 7.0. Repair did not require synthesis of protein, ribonucleic acid, or cell wall mucopeptide, but did require energy in the form of adenosine triphosphate (ATP) synthesized through oxidative phosphorylation. The requirement for ATP was based on dinitrophenol or cyanide interference with repair. Dinitrophenol activity was pH-dependent; no repair occurred at pH 6.0 and some repair was observed at pH 6.5 and above. Injured cells were extremely sensitive to low concentrations of ethylenedinitrilotetraacetate. This indicated that freeze-drying injury of S. anatum may involve the lipopolysaccharide portion of the cell wall and that repair of this damage requires ATP synthesis.
机译:补液后迅速修复了脱脂乳固体中沙门氏菌冷冻干燥引起的损伤。存活细胞的损伤定义为不能在含有脱氧胆酸盐的平板培养基上形成菌落。死亡被定义为在没有这种选择剂的情况下无法在同一培养基中形成菌落。通过将温度从35 C降低到10 C降低了修复率,在1 C时极低。修复不受pH值在6.0和7.0之间的影响。修复不需要合成蛋白质,核糖核酸或细胞壁粘肽,但需要通过氧化磷酸化合成的三磷酸腺苷(ATP)形式的能量。 ATP的要求是基于二硝基苯酚或氰化物对修复的干扰。二硝基苯酚活性是pH依赖性的;在pH 6.0时未发生修复,而在pH 6.5及以上时观察到一些修复。受伤的细胞对低浓度的乙二腈三乙酸四酯极为敏感。这表明金黄色葡萄球菌的冻干损伤可能涉及细胞壁的脂多糖部分,并且修复这种损伤需要ATP合成。

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