Does A L, Bisson L F
Department of Viticulture and Enology, University of California, Davis 95616.
J Bacteriol. 1989 Mar;171(3):1303-8. doi: 10.1128/jb.171.3.1303-1308.1989.
The kinetics of glucose uptake were investigated in laboratory wild-type strains of Saccharomyces cerevisiae of differing genetic backgrounds, in other species of Saccharomyces, and in other yeasts, both fermentative and respiratory. All yeasts examined displayed more than one uptake system for glucose. Variations in apparent Km values, velocity of uptake, and effects of glucose concentration on carrier activity were observed. The three type strains for the species S. cerevisiae, Saccharomyces bayanus, and Saccharomyces carlsbergensis gave distinctive patterns, and each of the laboratory strains was similar to one or another of the type strains. Other fermentative yeasts (Pichia guillermondi and Pichia strasburgensis) regulated glucose uptake in a manner similar to that of Saccharomyces spp. Such was not true for the respiratory yeasts investigated, Pichia heedi and Yarrowia lipolytica, which did not demonstrate glucose repression of carrier activity; this finding suggests that this mechanism of control of transporter activity may be associated with fermentative ability.
研究了不同遗传背景的酿酒酵母实验室野生型菌株、其他酿酒酵母物种以及其他酵母(包括发酵型和呼吸型)对葡萄糖的摄取动力学。所有检测的酵母都表现出不止一种葡萄糖摄取系统。观察到表观米氏常数、摄取速度以及葡萄糖浓度对载体活性的影响存在差异。酿酒酵母、巴氏酵母和卡尔斯伯酵母这三个模式菌株呈现出独特的模式,每个实验室菌株都与其中一个模式菌株相似。其他发酵型酵母(季也蒙毕赤酵母和斯特拉斯堡毕赤酵母)调节葡萄糖摄取的方式与酿酒酵母属相似。但所研究的呼吸型酵母,即赫德毕赤酵母和解脂耶氏酵母并非如此,它们并未表现出葡萄糖对载体活性的抑制作用;这一发现表明,这种转运蛋白活性的控制机制可能与发酵能力有关。