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首页> 外文期刊>The Journal of General and Applied Microbiology >REGULATION OF INTRACELLULAR OSMOTIC PRESSURE AND SOME FACTORS THAT INFLUENCE THE PROMOTION OF GLYCEROL SYNTHESIS IN A RESPIRATION-DEFICIENT MUTANT OF THE SALT-TOLERANT YEAST ZYGOSACCHAROMYCES ROUXH DURING SALT STRESS
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REGULATION OF INTRACELLULAR OSMOTIC PRESSURE AND SOME FACTORS THAT INFLUENCE THE PROMOTION OF GLYCEROL SYNTHESIS IN A RESPIRATION-DEFICIENT MUTANT OF THE SALT-TOLERANT YEAST ZYGOSACCHAROMYCES ROUXH DURING SALT STRESS

机译:盐胁迫过程中耐盐型酵母酵母糖浆在呼吸不足的突变体中细胞内渗透压的调节及一些影响甘油合成的因素

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TThe accumulation of glycerol and inorganic ions were examined in a respiration-deficient (RD) mutant isolated from the salt-tolerant yeast Zygosaccharomyces rouxii for 3h after salt stress due to 1M NaCl. After the start of salt stress, intracellular levels of glycerol continued to increase for up to 3h, while the levels of Na+ and Cl- ions in cells reached maximum values within 1h and then decreased gradually. Increases in intracellular concentrations of solutes resulted in an osmotic pressure that was almost equivalent to the external osmotic pressure within 2h after salt stress. The RD strain had the same ability to tolerate salt as the wild-type strain. Therefore, we used the RD strain to examine the mechanism in the glycolytic pathway that is responsible for the promotion of glycerol synthesis that is induced by NaCl. When exposed to medium with 1M NaCl, RD cells diverted about one-sixteenth of the amount of ethanol that was produced in the medium without NaCl to the production of glycerol. This result suggests the presence of factors that mediate a change from the normal metabolism of glucose to the promotion of glycerol synthesis in response to external NaCl. The specific activities of glycerol-3-phosphate dehydrogenase (GPDH) in extracts of cells grown with and without 1M NaCl were very low in reaction mixtures with NADH or NADPH, although the cellular activity of alcohol dehydrogenase (ADH) was high and was repressed by external NaCl. This result indicates that the pathway involving GPDH makes only a small contribution to the synthesis of glycerol and that an alternative pathway functions for the synthesis in Z. rouxii. The addition of sodium sulfite, which binds to acetaldehyde, and of glycidol, an inhibitor of triosephosphate isomerase (TPI), to the medium promoted the synthesis of glycerol in RD strain. These results suggest the possibility that the extra NADH resulted from the binding ofsulfite to acetaldehyde, or the inhibition of ADH and/or TPI under the NaCl-stressed condition lead to the promotion of glycerol synthesis by Z. rouxii.
机译:在由于1M NaCl引起的盐胁迫后,从耐盐酵母圆叶酵母(Zygosaccharomyces rouxii)分离出的呼吸不足(RD)突变体中,检测了甘油和无机离子的积累3小时。盐胁迫开始后,细胞内甘油水平持续升高长达3h,而细胞中Na +和Cl-离子的水平在1h内达到最大值,然后逐渐下降。细胞内溶质浓度的增加导致盐胁迫后2小时内的渗透压几乎等于外部渗透压。 RD菌株具有与野生型菌株相同的耐盐能力。因此,我们使用RD菌株来检查糖酵解途径中的机制,该机制负责促进NaCl诱导的甘油合成。当暴露于含有1M NaCl的培养基中时,RD细胞会将不含NaCl的培养基中产生的乙醇量的大约十六分之一转移到甘油的产生中。该结果表明存在响应于外部NaCl介导从葡萄糖的正常代谢变化到甘油合成促进的改变的因子的存在。在含有和不含1M NaCl的细胞中,在含有NADH或NADPH的反应混合物中,甘油3-磷酸脱氢酶(GPDH)的比活非常低,尽管乙醇脱氢酶(ADH)的细胞活度很高,并被抑制外部氯化钠。该结果表明,涉及GPDH的途径仅对甘油的合成做出很小的贡献,并且替代途径对鲁氏沼虾的合成起作用。向培养基中添加与乙醛结合的亚硫酸钠和甘油三糖磷酸异构酶(TPI)抑制剂缩水甘油可促进RD菌株中甘油的合成。这些结果表明,由亚硫酸盐与乙醛结合或在NaCl胁迫条件下对ADH和/或TPI的抑制导致多余的NADH可能导致鲁氏梭状芽孢杆菌促进甘油合成。

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