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首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Anhydrobiosis in yeast: is it possible to reach anhydrobiosis for yeast grown in conditions with severe oxygen limitation?
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Anhydrobiosis in yeast: is it possible to reach anhydrobiosis for yeast grown in conditions with severe oxygen limitation?

机译:酵母中的脱水生物:在严重缺氧的条件下生长的酵母是否有可能达到脱水生物?

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摘要

The yeast Saccharomyces cerevisiae was shown to be extremely sensitive to dehydration-rehydration treatments when stationary phase cells were subjected to conditions of severe oxygen limitation, unlike the same cells grown in aerobic conditions. The viability of dehydrated anaerobically grown yeast cells never exceeded 2 %. It was not possible to increase this viability using gradual rehydration of dry cells in water vapour, which usually strongly reduces damage to intracellular membranes. Specific pre-dehydration treatments significantly increased the resistance of anaerobic yeast to drying. Thus, incubation of cells with trehalose (100 mM), increased the viability of dehydrated cells after slow rehydration in water vapour to 30 %. Similarly, pre-incubation of cells in 1 M xylitol or glycerol enabled up to 50-60 % of cells to successfully enter a viable state of anhydrobiosis after subsequent rehydration. We presume that trehalose and sugar alcohols function mainly according to a water replacement hypothesis, as well as initiating various protective intracellular reactions.
机译:当固定相细胞处于严重缺氧条件下时,酿酒酵母酵母对脱水-脱水处理极为敏感,这与在有氧条件下生长的相同细胞不同。脱水厌氧生长的酵母细胞的活力从未超过2%。在水蒸气中使用干细胞逐渐补液是不可能增加这种活力的,这通常会大大减少对细胞内膜的损伤。特定的预脱水处理显着提高了厌氧酵母对干燥的抵抗力。因此,将细胞与海藻糖(100 mM)一起孵育后,在水蒸气中缓慢补水至30%后,可增加脱水细胞的活力。同样,将细胞在1 M木糖醇或甘油中预孵育后,多达50-60%的细胞可以在随后的补液后成功进入脱水生物的生存状态。我们假设海藻糖和糖醇主要根据水置换假说起作用,并引发各种保护性细胞内反应。

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