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Intracellular trehalose is neither necessary nor sufficient for desiccation tolerance in yeast

机译:细胞内海藻糖对于酵母中的脱水耐受性既不是必需的也不是足够的

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摘要

Trehalose is thought to be important for desiccation tolerance in a number of organisms, including Saccharomyces cerevisiae, but there is limited in vivo evidence to support this hypothesis. In wild-type yeast, the degree of desiccation tolerance has been shown previously to increase in cultures after diauxic shift and also in exponential-phase cultures after exposure to heat stress. Under both these conditions, increased survival of desiccation correlates with elevated intracellular trehalose concentrations. Our data confirm these findings, but we have tested the apparent importance of trehalose using mutant strains with a deleted trehalose-6-phosphate synthase gene (tps1Delta). Although tps1Delta strains do not produce trehalose, they are nevertheless capable of desiccation tolerance, and the degree of tolerance also increases after diauxic shift or heat stress, albeit slightly less than in the wild type. Conversely, when wild-type yeast is subjected to osmotic stress, mid-exponential-phase cultures produce high concentrations of intracellular trehalose but show little improvement in desiccation tolerance. These results show that there is no consistent relationship between intracellular trehalose levels and desiccation tolerance in S. cerevisiae. Trehalose seems to be neither necessary nor sufficient for, although in some strains might quantitatively improve, survival of desiccation, suggesting that other adaptations are more important.
机译:海藻糖被认为对包括酿酒酵母(Saccharomyces cerevisiae)在内的许多生物的耐干燥性很重要,但是在体内证据不足以支持这一假说。在野生型酵母中,先前已经显示出干燥耐受性的程度在双峰转移后的培养物中以及在暴露于热应激后的指数相培养物中都增加。在这两种条件下,干燥的存活率提高与细胞内海藻糖浓度升高有关。我们的数据证实了这些发现,但是我们已经使用具有缺失的海藻糖6磷酸合酶基因(tps1Delta)的突变菌株测试了海藻糖的表面重要性。尽管tps1Delta菌株不产生海藻糖,但它们仍具有脱水耐受性,并且在双峰移动或热胁迫后耐受性程度也有所提高,尽管比野生型略低。相反,当野生型酵母受到渗透胁迫时,中指数期培养物会产生高浓度的细胞内海藻糖,但干燥耐性几乎没有改善。这些结果表明,酿酒酵母中细胞内海藻糖水平与干燥耐受性之间没有一致的关系。尽管在某些菌株中海藻糖可能会在数量上有所改善,但海藻糖似乎既无必要也不充分,这表明其他适应措施更为重要。

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