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微生物隐生现象。

Microbial anhydrobiosis.

作者信息

Bosch Jason, Varliero Gilda, Hallsworth John E, Dallas Tiffany D, Hopkins David, Frey Beat, Kong Weidong, Lebre Pedro, Makhalanyane Thulani P, Cowan Don A

机构信息

Centre for Microbial Ecology and Genomics, Department of Biochemistry, Genetics and Microbiology, University of Pretoria, Pretoria, 0002, South Africa.

Institute for Global Food Security, School of Biological Sciences, Queen's University Belfast, 19 Chlorine Gardens, Belfast, Northern Ireland, BT9 5DL, UK.

出版信息

Environ Microbiol. 2021 Nov;23(11):6377-6390. doi: 10.1111/1462-2920.15699. Epub 2021 Aug 12.

Abstract

The loss of cellular water (desiccation) and the resulting low cytosolic water activity are major stress factors for life. Numerous prokaryotic and eukaryotic taxa have evolved molecular and physiological adaptions to periods of low water availability or water-limited environments that occur across the terrestrial Earth. The changes within cells during the processes of desiccation and rehydration, from the activation (and inactivation) of biosynthetic pathways to the accumulation of compatible solutes, have been studied in considerable detail. However, relatively little is known on the metabolic status of organisms in the desiccated state; that is, in the sometimes extended periods between the drying and rewetting phases. During these periods, which can extend beyond decades and which we term 'anhydrobiosis', organismal survival could be dependent on a continued supply of energy to maintain the basal metabolic processes necessary for critical functions such as macromolecular repair. Here, we review the state of knowledge relating to the function of microorganisms during the anhydrobiotic state, highlighting substantial gaps in our understanding of qualitative and quantitative aspects of molecular and biochemical processes in desiccated cells.

摘要

细胞水分流失(脱水)以及由此导致的胞质水活性降低是生命的主要应激因素。众多原核生物和真核生物类群已经进化出分子和生理适应性,以应对地球上陆地各处出现的低水可利用期或水分受限环境。在脱水和再水化过程中细胞内的变化,从生物合成途径的激活(和失活)到相容性溶质的积累,都已得到相当详细的研究。然而,对于处于脱水状态的生物体的代谢状态,即处于干燥和再湿润阶段之间有时会持续很长时间的状态,我们了解得相对较少。在这些可能持续数十年的时期,我们称之为“隐生现象”,生物体的存活可能依赖于持续的能量供应,以维持诸如大分子修复等关键功能所需的基础代谢过程。在这里,我们综述了与微生物在隐生状态下的功能相关的知识状况,强调了我们在理解脱水细胞中分子和生化过程的定性和定量方面存在的重大差距。

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