Matin A, Rittenberg S C
J Bacteriol. 1970 Oct;104(1):234-8. doi: 10.1128/jb.104.1.234-238.1970.
The growth yield of Thiobacillus intermedius is greater in glucose-yeast extract or glucose-casein hydrolysate broth than in comparable media without glucose. The quantity of glucose utilized in the glucose-supplemented media is much greater than the increase in cell yield observed relative to the unsupplemented media. Addition of glucose to cell-free extracts of glucose-yeast extract or glucose-casein hydrolysate grown cells results in the reduction of endogenous cytochrome c. Thus, in these media, glucose serves as a source of energy. This is in contrast to thiosulfate-glucose broth in which glucose provides only cell carbon. The presence of thiosulfate in glucose-casein hydrolysate broth results in a marked decrease in glucose consumption. Cytochrome c in extracts of cells grown in this medium is not reduced by glucose addition. The data suggest that thiosulfate prevents the utilization of glucose for energy generation. The final growth yield in glucose-casein hydrolysate broth is directly proportional to the initial glucose concentration, although not all the glucose was utilized even at the lowest concentration tested. This effect may be due to an inefficient glucose transport in this organism.
中间硫杆菌在葡萄糖 - 酵母提取物或葡萄糖 - 酪蛋白水解物肉汤中的生长产量高于不含葡萄糖的类似培养基。在添加葡萄糖的培养基中利用的葡萄糖量远大于相对于未添加葡萄糖的培养基所观察到的细胞产量增加。向在葡萄糖 - 酵母提取物或葡萄糖 - 酪蛋白水解物中生长的细胞的无细胞提取物中添加葡萄糖会导致内源性细胞色素c减少。因此,在这些培养基中,葡萄糖作为能量来源。这与硫代硫酸盐 - 葡萄糖肉汤形成对比,在硫代硫酸盐 - 葡萄糖肉汤中葡萄糖仅提供细胞碳源。葡萄糖 - 酪蛋白水解物肉汤中硫代硫酸盐的存在导致葡萄糖消耗显著减少。向在此培养基中生长的细胞提取物中添加葡萄糖不会使细胞色素c减少。数据表明硫代硫酸盐阻止了葡萄糖用于能量生成。葡萄糖 - 酪蛋白水解物肉汤中的最终生长产量与初始葡萄糖浓度成正比,尽管即使在测试的最低浓度下并非所有葡萄糖都被利用。这种效应可能是由于该生物体中葡萄糖转运效率低下所致。