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关于耐盐机制。汉逊德巴利酵母生长过程中甘油的产生与热量变化

On the mechanism of salt tolerance. Production of glycerol and heat during growth of Debaryomyces hansenii.

作者信息

Gustafsson L, Norkrans B

出版信息

Arch Microbiol. 1976 Nov 2;110(23):177-83. doi: 10.1007/BF00690226.

Abstract

As glycerol was suggested as an osmotic agent in the salt tolerant Debaryomyces hansenii the concentrations of total, intracellular, and extracellular glycerol produced by this yeast was followed during growth in 4 mM, 0.68 M, and 2.7 M NaCl media. The total amount of glycerol was not directly proportional to biomass production but to the cultural salinity with maximum concentrations just prior to or at the beginning of the stationary phase. In all cultures the cells lost some glycerol to the media, at 2.7 M NaCl the extracellular glycerol even amounted maximally to 80% of the total. A distinct maximum of intracellular glycerol, related to dry weight or cell number, appeared during the log phase at all NaCl concentrations. As the intracellular calculated glycerol concentrations amounted to 0.2 M, 0.8 M, and 2.6 M in late log phase cells at 4mM, 0.68 M, and 2.7 M NaCl, respectively, whereas the corresponding analysed values for the glycerol concentrations of the media were 0.7 mM, 2.5 mM, and 3.0 mM, glycerol contributes to the osmotic balance of the cells. During the course of growth all cultures showed a decreasing heat production related to cell substance produced, most pronounced at 2.7 M NaCl. At 2.7 M NaCl the total heat production amounted to--1690 kJ per mole glucose consumed in contrast to--1200 and--1130 kJ at 4 mM and 0.68 M NaCl, respectively. The Ym-values were of an inverse order, being 129, 120, and 93 at 4 mM, 0.68 M, and 2.7 M NaCl respectively.

摘要

由于甘油被认为是耐盐汉逊德巴利酵母中的一种渗透剂,因此在4 mM、0.68 M和2.7 M NaCl培养基中培养该酵母期间,对其产生的总甘油、细胞内甘油和细胞外甘油的浓度进行了跟踪。甘油的总量与生物量的产生并非直接成正比,而是与培养盐度成正比,在稳定期之前或开始时达到最大浓度。在所有培养物中,细胞都会向培养基中损失一些甘油,在2.7 M NaCl条件下,细胞外甘油甚至最多可达总量的80%。在所有NaCl浓度下的对数期,细胞内甘油与干重或细胞数量相关的含量均出现明显的最大值。由于在对数期末期,4 mM、0.68 M和2.7 M NaCl条件下细胞内计算得出的甘油浓度分别为0.2 M、0.8 M和2.6 M,而培养基中甘油浓度的相应分析值分别为0.7 mM、2.5 mM和3.0 mM,因此甘油有助于细胞的渗透平衡。在生长过程中,所有培养物产生的与所产生细胞物质相关的热量均呈下降趋势,在2.7 M NaCl条件下最为明显。在2.7 M NaCl条件下,每消耗1摩尔葡萄糖产生的总热量为–1690 kJ,而在4 mM和0.68 M NaCl条件下分别为–1200 kJ和–1130 kJ。Ym值呈相反顺序,在4 mM、0.68 M和2.7 M NaCl条件下分别为129、120和93。

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