Laboratory of Cell Biology, Institute of Microbiology and Biotechnology, University of Latvia, Jelgavas Str., 1, LV-1004 Riga, Latvia.
Laboratory of Biophysics, Wageningen University, Helix, Stippeneng 4, 6708 PD Wageningen, The Netherlands.
Biotechnol Adv. 2019 Jan-Feb;37(1):51-67. doi: 10.1016/j.biotechadv.2018.11.003. Epub 2018 Nov 16.
Under natural conditions yeast cells as well as other microorganisms are regularly subjected to the influence of severe drought, which leads to their serious dehydration. The dry seasons are then changed by rains and there is a restoration of normal water potential inside the cells. To survive such seasonal changes a lot of vegetative microbial cells, which belong to various genera and species, may be able to enter into a state of anhydrobiosis, in which their metabolism is temporarily and reversibly suspended or delayed. This evolutionarily developed adaptation to extreme conditions of the environment is widely used for practical goals - for conservation of microorganisms in collections, for maintenance and long storage of different important strain-producers and for other various biotechnological purposes. This current review presents the most important data obtained mainly in the studies of the structural and functional changes in yeast cells during dehydration. It describes the changes of the main organelles of eukaryotic cells and their role in cell survival in a dry state. The review provides information regarding the role of water in the structure and functions of biological macromolecules and membranes. Some important intracellular protective reactions of eukaryotic organisms, which were revealed in these studies and may have more general importance, are also discussed. The results of the studies of yeast anhydrobiosis summarized in the review show the possibilities of improving the conservation and long-term storage of various microorganisms and of increasing the quality of industrially produced dry microbial preparations.
在自然条件下,酵母细胞以及其他微生物经常受到严重干旱的影响,这导致它们严重脱水。然后,干燥季节会被雨水改变,细胞内的正常水势得以恢复。为了应对这种季节性变化,许多属于不同属和种的营养微生物细胞可能能够进入一种休眠状态,在这种状态下,它们的新陈代谢暂时和可逆地停止或延迟。这种针对环境极端条件的进化适应性被广泛应用于实际目的——用于保存微生物收藏、维持和长期储存不同重要的生产菌株以及其他各种生物技术目的。本综述主要介绍了在研究酵母细胞脱水过程中结构和功能变化方面获得的最重要的数据。它描述了真核细胞的主要细胞器的变化及其在干燥状态下细胞存活中的作用。该综述提供了有关水在生物大分子和膜结构和功能中的作用的信息。还讨论了在这些研究中揭示的真核生物的一些重要的细胞内保护反应,这些反应可能具有更普遍的意义。本综述总结的酵母休眠的研究结果表明,提高各种微生物的保存和长期储存质量以及提高工业生产的干燥微生物制剂质量是有可能的。