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首页> 外文期刊>Extremophiles: Life under extreme conditions >Marine acidophilic sulfur-oxidizing bacterium requiring salts for the oxidation of reduced inorganic sulfur compounds
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Marine acidophilic sulfur-oxidizing bacterium requiring salts for the oxidation of reduced inorganic sulfur compounds

机译:海洋嗜酸性硫氧化细菌,需要盐来氧化还原的无机硫化合物

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摘要

An acidophilic sulfur-oxidizing bacterium was isolated from seawater, and designated as strain SH. Strain SH was a Gram-negative, rod-shaped and motile bacterium, which had an optimum temperature and pH value for growth of 30°C and 4.0, respectively. The mol% guanine plus cytosine of the DNA was 46.0. Chemolithotrophic growth was observed with elemental sulfur and tetrathionate at pH 4.0, and was not observed with ferrous ion. The isolate was able to utilize carbon dioxide as a carbon source, and was unable to grow heterotrophically with yeast extract or glucose. The growth of strain SH was activated in medium supplemented with NaCl. However, LiCl and KCl did not sustain the growth of strain SH. The results indicate that strain SH was an acidophilic, halophilic, and obligately chemolithotrophic sulfur-oxidizing bacterium. Phylogenetic analysis based on 16S rDNA sequences indicated that strain SH had a close relationship to Acidithiobacillus thiooxidans. The oxidizing activities of sulfur and sulfite with resting cells were stimulated not only by the addition of NaCl, but also by KCl and LiCl. The oxidation of sulfite was inhibited by ionophores, carbonyl cyanide-m-chlorophenylhydrazone (CCCP), and monensin, and respiratory inhibitors, KCN and 2-heptyl-4-hydroxy-quinoline-N-oxode (HQNO).
机译:从海水中分离出嗜酸性的硫氧化细菌,并将其命名为SH菌株。 SH菌株是革兰氏阴性,杆状和能动细菌,其最佳生长温度和pH值分别为30℃和4.0。 DNA的鸟嘌呤加胞嘧啶的摩尔%为46.0。 pH值为4.0的元素硫和四硫代酸盐观察到化学营养的生长,而亚铁离子则未观察到。该分离物能够利用二氧化碳作为碳源,并且不能与酵母提取物或葡萄糖异养生长。 SH菌株的生长在添加NaCl的培养基中被激活。但是,LiCl和KCl不能维持SH菌株的生长。结果表明,菌株SH是嗜酸,嗜盐和专化化营养性硫氧化细菌。基于16S rDNA序列的系统发育分析表明,SH菌株与硫代酸性氧化硫杆菌有密切关系。硫和亚硫酸盐在静止细胞中的氧化活性不仅可以通过添加氯化钠来刺激,还可以通过氯化钾和氯化锂来刺激。亚硫酸盐的氧化被离子载体,羰基氰化物-间-氯苯基((CCCP)和莫能菌素以及呼吸抑制剂KCN和2-庚基-4-羟基喹啉-N-氧氧化物(HQNO)抑制。

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