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Effect of trehalose accumulation on response to saline stress in Saccharomyces cerevisiae

机译:海藻糖积累对酿酒酵母对盐胁迫响应的影响

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To examine the effect of trehalose accumulation on response to saline stress in Saccharomyces cerevisiae, we constructed deletion strains of all combinations of the trehalase genes ATH1, NTH1 and NTH2 and examined their growth behaviour and intracellular trehalose accumulation under non-stress and saline-stress conditions. Saline stress was induced in yeast cells by NaCl addition at the exponential growth phase. All deletion strains showed similar specific growth rates and trehalose accumulation totheir parent strain under non-stress conditions. However, under the saline stress condition, one single deletion strain, nth1Delta, two double deletion strains, nth1Delta ath1Delta and nth1Delta nth2Delta, and the triple deletion strain nth1Deltanth2Delta ath1Delta, all of which carry the nth1Delta deletion, showed increased trehalose accumulation as compared to the parent and other deletion strains. In particular, our statistical analysis revealed that the triple deletion strain showed a higher growthrate under the saline stress condition than the parent strain. Moreover, some deletion strains showed further trehalose accumulation under non-stress conditions by overexpression of the TPS1 or TPS2 genes encoding the enzymes related to trehalose biosynthesis at the mid-exponential phase. Such increased trehalose accumulation prior to NaCl addition could improve the growth of these strains under saline stress. Our results indicate that high trehalose accumulation prior to NaCl addition, rather than after NaCl addition, is necessary to achieve high growth activity under stress conditions.
机译:为了研究酿酒酵母中海藻糖积累对盐胁迫响应的影响,我们构建了海藻糖酶基因ATH1,NTH1和NTH2所有组合的缺失菌株,并研究了它们在非胁迫和盐胁迫条件下的生长行为和细胞内海藻糖积累。 。在指数生长期通过添加氯化钠在酵母细胞中诱导了盐胁迫。在非胁迫条件下,所有缺失菌株均显示出与其亲本菌株相似的比生长速率和海藻糖积累。但是,在盐胁迫条件下,一个单缺失菌株nth1Delta,两个双缺失菌株nth1Delta ath1Delta和nth1Delta nth2Delta和三缺失菌株nth1Deltanth2Delta ath1Delta均携带nth1Delta缺失,与海藻糖相比,它们的海藻糖积累增加了。亲本和其他缺失菌株。特别地,我们的统计分析表明,三重缺失菌株在盐胁迫条件下显示出比亲本菌株更高的生长速率。此外,一些缺失菌株在中度指数期通过在编码海藻糖生物合成相关酶的TPS1或TPS2基因的过表达而显示出在非胁迫条件下海藻糖的进一步积累。在添加NaCl之前,这种增加的海藻糖积累可以改善这些菌株在盐胁迫下的生长。我们的结果表明,添加NaCl之前而不是添加NaCl之后的高海藻糖积累对于在胁迫条件下实现高生长活性是必要的。

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