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Molecular Mechanisms of Adaptation of the Moderately Halophilic Bacterium Halobacillis halophilus to Its Environment

机译:中度嗜盐细菌嗜盐嗜盐菌对其环境适应的分子机制

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摘要

The capability of osmoadaptation is a prerequisite of organisms that live in an environment with changing salinities. Halobacillus halophilus is a moderately halophilic bacterium that grows between 0.4 and 3 M NaCl by accumulating both chloride and compatible solutes as osmolytes. Chloride is absolutely essential for growth and, moreover, was shown to modulate gene expression and activity of enzymes involved in osmoadaptation. The synthesis of different compatible solutes is strictly salinity- and growth phase-dependent. This unique hybrid strategy of H. halophilus will be reviewed here taking into account the recently published genome sequence. Based on identified genes we will speculate about possible scenarios of the synthesis of compatible solutes and the uptake of potassium ion which would complete our knowledge of the fine-tuned osmoregulation and intracellular osmolyte balance in H. halophilus.
机译:渗透适应能力是生活在盐度不断变化的环境中的生物的先决条件。嗜盐嗜盐杆菌是一种中等嗜盐细菌,通过累积氯化物和相容性溶质作为渗透液而在0.4至3 M NaCl之间生长。氯化物对于生长绝对是必不可少的,此外,氯化物还可以调节与渗透适应有关的酶的基因表达和活性。不同相容性溶质的合成严格取决于盐度和生长相。考虑到最近发表的基因组序列,本文将对嗜盐嗜血杆菌的这种独特的杂交策略进行综述。基于已鉴定的基因,我们将推测相容性溶质的合成和钾离子吸收的可能情况,这些情况将使我们了解嗜盐嗜血杆菌的微调渗透压和细胞内渗透液平衡。

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