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

机译:中度嗜盐细菌的耐盐性研究。甜菜碱对呼吸系统耐盐性的影响

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摘要

The role of betaine as a factor influencing the salt resistance of the respiratory system in resting cells of the moderately halophilic halotolerant bacterium Ba1 was studied. Betaine accelerated succinate oxidation in cells obtained from low-salt medium, and stimulation of the respiratory rate was stronger the higher the sodium chloride concentration in the assay medium. The stimulatory effect also depended on the ratio of betaine concentration to the amount of bacteria present. Accumulation of labelled betaine by the bacterial cells was demonstrated; like the respiratory stimulation, it was favourably influenced by an increase in the sodium chloride concentration of the medium. In cells harvested from a high-salt medium and washed with 2·0m-sodium chloride, betaine caused no increase in the respiratory rate, nor was the already high salt resistance of the respiratory system further improved by the addition of betaine. When, however, these cells lost their salt resistance as a result of washing in the absence of sodium chloride, betaine was able to restore it to its original level. In contrast with respiration in low-salt-grown bacteria, that in high-salt-grown cells was not affected by betaine, even after they were washed in the absence of sodium chloride, when the sodium chloride concentration was optimum.
机译:研究了甜菜碱作为影响中度嗜盐性耐盐性细菌Ba1的静息细胞中呼吸系统耐盐性的因素的作用。甜菜碱促进了从低盐培养基中获得的细胞中琥珀酸的氧化,并且在测定培养基中氯化钠浓度越高,呼吸速率的刺激越强。刺激作用还取决于甜菜碱浓度与存在的细菌数量之比。细菌细胞会积累标记的甜菜碱;像呼吸刺激一样,它受到培养基中氯化钠浓度增加的有利影响。在从高盐培养基中收获并用2·0m氯化钠洗涤的细胞中,甜菜碱不会导致呼吸频率增加,添加甜菜碱也不会进一步改善呼吸系统已经很高的耐盐性。但是,当这些细胞由于在没有氯化钠的情况下洗涤而失去了耐盐性时,甜菜碱能够将其恢复到原始水平。与低盐生长的细菌的呼吸相反,高盐生长的细胞不受甜菜碱的影响,即使在没有氯化钠的情况下洗涤后,氯化钠浓度最佳。

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