Suhaila Yaacob Nor, Rosfarizan Mohamad, Ahmad Siti Aqlima, Abdul Latif Ibrahim, Ariff Arbakariya Bin
J Environ Biol. 2013 May;34(3):635-43.
The capability of Rhodococcus UKMP-5M, isolated from petroleum contaminated soil, in the degradation of phenol was studied using shake flask culture. The effect of nutrients and cultivation conditions on growth of this bacterium and phenol degradation was investigated. Among the different types of medium tested (M1, M2, M3 and M4), M1 was found to be the preferred medium for growth of this bacterium and phenol degradation. The optimized cultivation conditions for growth of Rhodococcus UKMP-5M and phenol degradation were; 30 degrees C, initial pH 7.5 and buffer concentration ranged from 5 to 50 mM. Improvement of growth and phenol degradation was achieved in medium supplemented with 2 g l(-1) glucose. In addition, NaCl at a concentration of 0.1 g l(-1) was required to enhance growth and phenol degradation. The addition of 0.4 g l(-1) (NH4)2SO4 into the culture medium greatly enhanced phenol degradation. At optimal medium composition and cultivation condition, Rhodococcus UKMP-5M was able to utilize phenol at concentration up to 900 mg l(-1). Results of this study showed that Rhodococcus UKMP-5M has potential to be used in the degradation of phenol.
利用摇瓶培养法研究了从石油污染土壤中分离出的红球菌UKMP-5M降解苯酚的能力。研究了营养物质和培养条件对该细菌生长及苯酚降解的影响。在所测试的不同类型培养基(M1、M2、M3和M4)中,发现M1是该细菌生长和苯酚降解的首选培养基。红球菌UKMP-5M生长及苯酚降解的优化培养条件为:30℃、初始pH 7.5且缓冲液浓度范围为5至50 mM。在添加2 g l(-1)葡萄糖的培养基中,生长和苯酚降解得到改善。此外,需要0.1 g l(-1)的NaCl来促进生长和苯酚降解。向培养基中添加0.4 g l(-1)的(NH4)2SO4可极大地增强苯酚降解。在最佳培养基组成和培养条件下,红球菌UKMP-5M能够利用浓度高达900 mg l(-1)的苯酚。本研究结果表明,红球菌UKMP-5M具有用于苯酚降解的潜力。