Qazi Muneer A, Kanwal Tayyaba, Jadoon Muniba, Ahmed Safia, Fatima Nighat
Dept. of Microbiology, Faculty of Biological Sciences, Quaid-i-Azam University, Islamabad, 45320, Pakistan.
Biotechnol Prog. 2014 Sep-Oct;30(5):1065-75. doi: 10.1002/btpr.1933. Epub 2014 Jun 2.
This study reports characterization of a biosurfactant-producing fungal isolate from oil contaminated soil of Missa Keswal oil field, Pakistan. It was identified as Fusarium sp. BS-8 on the basis of macroscopic and microscopic morphology, and 18S rDNA gene sequence homology. The biosurfactant-producing capability of the fungal isolates was screened using oil displacement activity, emulsification index assay, and surface tension (SFT) measurement. The optimization of operational parameters and culture conditions resulted in maximum biosurfactant production using 9% (v/v) inoculum at 30°C, pH 7.0, using sucrose and yeast extract, as carbon and nitrogen sources, respectively. A C:N ratio of 0.9:0.1 (w/w) was found to be optimum for growth and biosurfactant production. At optimal conditions, it attained lowest SFT (i.e., 32 mN m(-1) ) with a critical micelle concentration of ≥ 1.2 mg mL(-1) . During 5 L shake flask fermentation experiments, the biosurfactant productivity was 1.21 g L(-1) pure biosurfactant having significant emulsifying index (E24 , 70%) and oil-displacing activity (16 mm). Thin layer chromatography and Fourier transform infrared spectrometric analyses indicated a lipopeptide type of the biosurfactant. The Fusarium sp. BS-8 has substantial potential of biosurfactant production, yet it needs to be fully characterized with possibility of relatively new class of biosurfactants.
本研究报告了从巴基斯坦米萨凯斯瓦尔油田受石油污染土壤中分离出的一种产生物表面活性剂真菌的特性。根据宏观和微观形态以及18S rDNA基因序列同源性,将其鉴定为镰刀菌属BS - 8。通过油置换活性、乳化指数测定和表面张力(SFT)测量对真菌分离株的产生物表面活性剂能力进行了筛选。操作参数和培养条件的优化使得在30°C、pH 7.0条件下,使用9%(v/v)接种量,分别以蔗糖和酵母提取物作为碳源和氮源时,生物表面活性剂产量最高。发现C:N比为0.9:0.1(w/w)最适合生长和生物表面活性剂生产。在最佳条件下,它达到了最低的表面张力(即32 mN m(-1)),临界胶束浓度≥1.2 mg mL(-1)。在5 L摇瓶发酵实验中,生物表面活性剂生产力为1.21 g L(-1)纯生物表面活性剂,具有显著的乳化指数(E24,70%)和油置换活性(16 mm)。薄层色谱和傅里叶变换红外光谱分析表明该生物表面活性剂为脂肽类型。镰刀菌属BS - 8具有产生生物表面活性剂的巨大潜力,但仍需要对其进行全面表征,有可能是一类相对新型的生物表面活性剂。