[Adaptation strategies of halophilic microorganisms and Debaryomyces hansenii (halophilic yeast)].

Juan Carlos González-Hernández, Antonio Peña
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Abstract

The term halophile is used for all those organisms belonging to hypersaline habitats; they constitute an interesting class of organisms able to compete successfully in salt water and to resist its denaturing effects. A wide diversity of microorganisms, prokaryotic and eukaryotic belong to this category. Halophile organisms have strategies allowing them not only to withstand osmotic stress, but also to function better in the presence of salt, in spite of maintaining high intracellular concentrations of salt, partly due to the synthesis of compatible solutes that allow them to balance their osmotic pressure. We describe the characteristics of some halophile organisms and D. hansenii (halophile yeast), that allow them to resist high concentrations of salt. The interest to know the great diversity microorganisms living in hypersaline habitats is growing, and has begun to be the center of recent investigations, since halophile organisms produce an wide variety of biomolecules that can be used for different applications. In this review we describe some mechanisms with which some halophile organisms count to resist the high concentration of salts, mainly NaCl.

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[嗜盐微生物和嗜盐酵母的适应策略]。
“嗜盐生物”一词用于所有属于高盐栖息地的生物;它们构成了一类有趣的生物,能够在盐水中成功竞争并抵抗其变性作用。各种各样的微生物,原核生物和真核生物都属于这一类。嗜盐生物有一些策略,使它们不仅能够承受渗透压力,而且在有盐存在的情况下也能更好地发挥作用,尽管细胞内的盐浓度很高,部分原因是相容溶质的合成使它们能够平衡渗透压。我们描述了一些嗜盐生物和D. hansenii(嗜盐酵母)的特性,使它们能够抵抗高浓度的盐。人们对了解生活在高盐环境下的多样性微生物的兴趣正在增长,并且已经开始成为最近研究的中心,因为嗜盐生物产生各种各样的生物分子,可以用于不同的应用。本文综述了一些嗜盐生物计数抵抗高浓度盐(主要是NaCl)的机制。
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