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The effect of NaCl on the growth of a Halomonas species: accumulation and utilization of compatible solutes

机译:NaCl对卤代酚种类生长的影响:兼容溶质的积累和利用

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The effect of NaCl on growth and compatible solute utilization was investigated in a Halomonas species. Growth of Halomonas was observed in medium of low osmolarity (high water activity) when only 01 mM Na+ was present. However, lowering the water activity, by addition of KCl or sucrose, inhibited growth in this low-Na+ medium, but growth could be restored by the addition of NaCl. The bacterium could grow on glucose as the sole carbon source in up to 355 M NaCl and was shown also to metabolize glycine betaine. However NaCl concentrations greater than 2 M inhibited growth when glycine betaine was the sole carbon source. Glycine betaine was transported into the cells by a process stimulated by NaCl irrespective of whether the carbon source was glucose or glycine betaine. Cytoplasmic levels of glycine betaine were monitored throughout the growth cycle in 2 M NaCl medium with glycine betaine as sole carbon source. As the culture aged, glycine betaine was increasingly replaced by the tetrahydropyrimidine ectoine as the major cytoplasmic solute. The increased sensitivity to high NaCl concentrations when grown on glycine betaine may be due to the glycine betaine catabolic pathway enzymes being inhibited by the increasing external solute concentration.
机译:NaCl对卤代酚物种研究了NaCl对生长和相容性溶质使用的影响。当仅存在01mM Na +时,在低渗透压(高水力活性)的培养基中观察到卤代卤阳的生长。然而,通过加入KCl或蔗糖降低水活性,抑制该低Na +培养基的生长,但可以通过添加NaCl来恢复生长。细菌可以在葡萄糖上生长,作为唯一的碳源,高达355μmNaCl,并且也被显示为代谢甘氨酸甜菜碱。然而,当甘氨酸甜菜碱是唯一的碳源时,NaCl浓度大于2μm抑制生长。通过NaCl刺激的方法通过NaCl运输到细胞中,而不管碳源是否是葡萄糖或甘氨酸甜菜碱,则通过NaCl运输到细胞中。在将甘氨酸培养基中的在整个生长循环中监测甘氨酸甜菜碱的细胞质水平,用甘氨酸甜菜碱作为唯一的碳源。随着培养的,甘氨酸甜菜碱越来越多地被四氢嘧啶胞外替代为主要细胞质溶质。在甘氨酸甜菜碱上生长时对高NaCl浓度的敏感性增加可能是由于甘氨酸甜菜甜菜甜菜肽分解代谢途径酶被增加的外部溶浓度抑制。

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