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三种生命域微生物适应高盐浓度的策略。

Strategies of adaptation of microorganisms of the three domains of life to high salt concentrations.

机构信息

Department of Biology, Biotechnical Faculty, University of Ljubljana, Vecna pot 111, SI-1000 Ljubljana, Slovenia.

Institute of Biochemistry, Medical Faculty, University of Ljubljana, Vrazov trg 1, SI-1000 Ljubljana, Slovenia.

出版信息

FEMS Microbiol Rev. 2018 May 1;42(3):353-375. doi: 10.1093/femsre/fuy009.

Abstract

Hypersaline environments with salt concentrations up to NaCl saturation are inhabited by a great diversity of microorganisms belonging to the three domains of life. They all must cope with the low water activity of their environment, but different strategies exist to provide osmotic balance of the cells' cytoplasm with the salinity of the medium. One option used by many halophilic Archaea and a few representatives of the Bacteria is to accumulate salts, mainly KCl and to adapt the entire intracellular machinery to function in the presence of molar concentrations of salts. A more widespread option is the synthesis or accumulation of organic osmotic, so-called compatible solutes. Here, we review the mechanisms of osmotic adaptation in a number of model organisms, including the KCl accumulating Halobacterium salinarum (Archaea) and Salinibacter ruber (Bacteria), Halomonas elongata as a representative of the Bacteria that synthesize organic osmotic solutes, eukaryotic microorganisms including the unicellular green alga Dunaliella salina and the black yeasts Hortaea werneckii and the basidiomycetous Wallemia ichthyophaga, which use glycerol and other compatible solutes. The strategies used by these model organisms and by additional halophilic microorganisms presented are then compared to obtain an integrative picture of the adaptations to life at high salt concentrations in the microbial world.

摘要

高盐环境的盐浓度高达 NaCl 饱和,生活着多种多样的微生物,它们属于生命的三个领域。它们都必须应对环境低水活度的挑战,但存在不同的策略来为细胞细胞质与介质的盐度提供渗透压平衡。许多嗜盐古菌和少数细菌的代表使用的一种选择是积累盐,主要是 KCl,并使整个细胞内机制适应存在摩尔浓度盐的环境。更为广泛的选择是合成或积累有机渗透压,即所谓的相容溶质。在这里,我们综述了一些模式生物的渗透压适应机制,包括积累 KCl 的盐杆菌(古菌)和盐红菌(细菌)、作为合成有机渗透压溶质的细菌代表的 elongata 盐单胞菌、包括单细胞绿藻杜氏盐藻和黑酵母 werneckii 和担子菌 Wallemia ichthyophaga 在内的真核微生物,它们使用甘油和其他相容溶质。然后,将这些模式生物和其他嗜盐微生物使用的策略进行比较,以获得微生物世界中高盐浓度下适应生活的综合图景。

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