Shivvers D W, Brock T D
J Bacteriol. 1973 May;114(2):706-10. doi: 10.1128/jb.114.2.706-710.1973.
Oxidation of elemental sulfur by Sulfolobus acidocaldarius, an autotroph which grows at high temperatures and low pH, was examined by use of (35)S-labeled elemental sulfur. When cultured at pH 3.2 and 70 C, S. acidocaldarius oxidized elemental sulfur essentially quantitatively to sulfuric acid. Oxidation rate paralleled growth rate and decrease in pH of the culture medium. Elemental sulfur was not oxidized under these conditions if the culture was poisoned with formaldehyde. During the growth phase, the proportion of cells attached to the sulfur crystals increased progressively, and in the later phases of growth over 10 times more cells were attached to sulfur than were free. Doubling times for eight strains growing on elemental sulfur varied from 37 to 55 h. The organism grows much more rapidly on yeast extract than on sulfur. In a medium containing both sulfur and yeast extract, sulfur oxidation was partially inhibited, although growth was excellent.
利用(35)S标记的元素硫,对嗜热嗜酸硫化叶菌(一种在高温和低pH条件下生长的自养菌)氧化元素硫的情况进行了研究。当在pH 3.2和70℃下培养时,嗜热嗜酸硫化叶菌将元素硫基本上定量地氧化为硫酸。氧化速率与生长速率以及培养基pH值的降低平行。如果培养物用甲醛中毒,在这些条件下元素硫不会被氧化。在生长阶段,附着在硫晶体上的细胞比例逐渐增加,并且在生长后期,附着在硫上的细胞比游离细胞多10倍以上。在元素硫上生长的8个菌株的倍增时间从37到55小时不等。该生物体在酵母提取物上比在硫上生长得快得多。在含有硫和酵母提取物的培养基中,尽管生长良好,但硫的氧化受到部分抑制。