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首页> 外文期刊>Applied and Environmental Microbiology >Thermothrix thiopara: Growth and Metabolism of a Newly Isolated Thermophile Capable of Oxidizing Sulfur and Sulfur Compounds
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Thermothrix thiopara: Growth and Metabolism of a Newly Isolated Thermophile Capable of Oxidizing Sulfur and Sulfur Compounds

机译:Thermothrix thiopara:能够氧化硫和硫化合物的新分离嗜热菌的生长和代谢

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摘要

Thermothrix thiopara is isolated from hot sulfur springs. It occurs in situ at a temperature of 72°C, a pH of 7.0, and an HS- concentration of 17.4 μmol/liter (0.8 ppm). The organism was capable of autotrophic growth. Sulfite, sulfur, and polythionates were formed and subsequently degraded to sulfate during growth with thiosulfate as the sole energy source. Thiosulfate was oxidized by the polythionate pathway, and the stoichiometry of growth on thiosulfate was determined. The organism was also capable of heterotrophic growth in amino acids and simple sugars. A source of reduced sulfur (methionine, glutathione) was required for heterotrophic growth. Growth occurred aerobically or anaerobically with nitrate as a terminal oxidant. Both nitrous oxide and dinitrogen were produced. At 73°C the maximum autotrophic growth rate in batch culture using thiosulfate was 0.56 generation per h. Under the same conditions in continuous culture, washout occurred at a dilution rate of 0.3 to 0.4 per h, corresponding to a cellular growth rate of 0.43 to 0.58 generation per h. This was nearly three times the growth rate for Thiobacillus denitrificans. T. thiopara is gram negative. It was also found to be both lysozyme and penicillin susceptible. As a result, this organism cannot be considered an archaebacterium.
机译:硫蓟马是从热的硫磺泉中分离出来的。它在72°C的温度,7.0的pH和17.4μmol/升(0.8 ppm)的HS浓度下原位发生。该生物能够自养生长。在以硫代硫酸盐为唯一能源的生长过程中,形成了亚硫酸盐,硫和多硫酸盐,随后降解为硫酸盐。硫代硫酸盐通过多硫代酸盐途径被氧化,并测定了硫代硫酸盐生长的化学计量。该生物还能够在氨基酸和单糖中异养生长。异养生长需要还原硫源(蛋氨酸,谷胱甘肽)。以硝酸盐为末端氧化剂,需氧或厌氧生长。一氧化二氮和二氮均产生。在73°C时,使用硫代硫酸盐的分批培养的最大自养生长速率为0.56代/小时。在连续培养的相同条件下,洗脱速度为每小时0.3至0.4的稀释率,相当于每小时细胞生长为0.43至0.58代。这几乎是反硝化硫杆菌的增长率的三倍。 T.thiopara为革兰氏阴性。还发现它同时对溶菌酶和青霉素敏感。结果,该生物不能被认为是古细菌。

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