首页> 外文OA文献 >Degradation of thiosulfate by sulfide-oxidizing enzyme produced by bacteria locally isolated from effective microorganism active solution (EMAS)
【2h】

Degradation of thiosulfate by sulfide-oxidizing enzyme produced by bacteria locally isolated from effective microorganism active solution (EMAS)

机译:从有效微生物活性溶液(EMAS)局部分离的细菌产生的硫化物氧化酶降解硫代硫酸盐

摘要

A potential aerobic sulfur-oxidizing bacterium (SOB) that was believed to be sulfide-oxidizing enzyme producing strain was previously isolated from Effective Microorganism Active Solution (EMAS), currently known as SO2. This gram negative bacterium was capable of growing autotrophically in sulfur-oxidizer medium, containing 4mM sodium thiosulfate that serves as an energy sources and electron donor. Sulfate ions were the expected end product of sulfide oxidation catalyzed by extracellular sulfide-oxidizing enzyme. The aims of this study are to identify and characterize the SO2 and to induce the activity of sulfide-oxidizing enzyme in this strain. The activity of sulfide-oxidizing enzyme was determined spectrophotometrically by measuring the increase of sulfate production using BaCl2 solution, while the oxidation of thiosulfate was colorimetrically determined at 460 nm. One unit of sulfide-oxidizing activity was defined as amount of enzyme required to produce 1 µmol sulfate per min per mL (U). The maximum sulfide-oxidizing activity (0.064 U) was achieved when the strain was grown at pH 5.0, 30˚C in medium containing 1% (w/v) peptone as nitrogen sources after 15 hours incubation. The specific growth rate of this strain at this condition was 0.1552 h-1, with doubling time value of 4.47 h.
机译:一种潜在的需氧硫氧化细菌(SOB),据信是产生硫化物氧化酶的菌株,是先前从有效微生物活性溶液(EMAS)(目前称为SO2)中分离出来的。这种革兰氏阴性细菌能够在含有4mM硫代硫酸钠的硫-氧化剂培养基中自养生长,作为能源和电子供体。硫酸根离子是细胞外硫化物氧化酶催化的硫化物氧化的预期终产物。这项研究的目的是鉴定和表征二氧化硫,并诱导该菌株中的硫化物氧化酶的活性。使用BaCl2溶液通过分光光度法测定硫酸盐产量的增加来测定硫化物氧化酶的活性,而在460 nm处比色法测定硫代硫酸盐的氧化。硫化物氧化活性的一个单位定义为每分钟每毫升(U)产生1微摩尔硫酸盐所​​需的酶量。温育15小时后,将菌株在pH 5.0、30℃,含有1%(w / v)蛋白ept作为氮源的培养基中生长时,可实现最大的硫化物氧化活性(0.064 U)。该菌株在此条件下的比生长速率为0.1552 h-1,时间倍增值为4.47 h。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号