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Studies on halotolerance in a moderately halophilic bacterium. Effect of growth conditions on salt resistance of the respiratory system

机译:中度嗜盐细菌的耐盐性研究。生长条件对呼吸系统耐盐性的影响

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pThe effect of sodium chloride on the respiratory activity of a moderately halophilic halotolerant bacterium was studied. Irrespective of growth conditions, resting cells oxidized succinate at a low rate unless sodium chloride was included in the assay mixture, maximum respiratory rates being obtained for sodium chloride concentrations between 0·2m and 0·8m. Neither potassium chloride nor sucrose could replace the sodium salt. The response of the respiratory system to sodium chloride concentration above the optimum depended on growth conditions. Respiration of cells harvested from a low-salt medium was almost inhibited completely by 2·0m-sodium chloride, and that of cells grown and washed in the presence of 2·0m-sodium chloride by 30%. After preincubation with a growth medium containing 2·0m-sodium chloride, even with all multiplication suppressed by chloramphenicol, the resistance of the respiratory system of low-salt-grown organisms to high salt concentrations increased considerably and resembled that of their high-salt-grown counterparts. A similar increase in resistance occurred after preincubation with yeast extract or with choline. With labelled choline, energy-dependent accumulation of labelled material occurred, the conditions required for maximum accumulation and retention being the same as those that increased the salt resistance of the respiratory system. The chromatographic behaviour of the labelled material indicated that the substance was not choline but a derivative, possibly betaine./p
机译:>研究了氯化钠对中度嗜盐卤代耐盐细菌呼吸活动的影响。不论生长条件如何,静息细胞都会以低速率氧化琥珀酸,除非将氯化钠包括在测定混合物中,氯化钠浓度在0·2m至0·8m之间可获得最大呼吸频率。氯化钾和蔗糖都不能代替钠盐。呼吸系统对高于最佳浓度的氯化钠浓度的反应取决于生长条件。从低盐培养基中收获的细胞的呼吸几乎完全被2·0m的氯化钠抑制,在2·0m的氯化钠存在下生长和洗涤的细胞的呼吸几乎被30%抑制。在用含有2·0m氯化钠的生长培养基进行预培养后,即使所有繁殖都受到氯霉素的抑制,低盐生长生物的呼吸系统对高盐浓度的抵抗力仍显着增加,类似于其高盐浓度生物。成长的同行。与酵母提取物或胆碱预孵育后,耐药性出现了类似的增加。使用标记的胆碱时,会发生能量依赖性的标记物质积聚,最大积聚和保留所需的条件与增加呼吸系统耐盐性的条件相同。标记物质的色谱行为表明该物质不是胆碱,而是衍生物,可能是甜菜碱。

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