Nwodo Uchechukwu U, Okoh Anthony I
Applied and Environmental Microbiology Research Group (AEMREG), Department of Biochemistry and Microbiology, University of Fort Hare, Private Bag X1314, Alice 5700, South Africa.
Molecules. 2014 Jul 29;19(8):11131-44. doi: 10.3390/molecules190811131.
The biofloculant production potential of a consortium of Streptomyces and Brachybacterium species were evaluated. Optimum bioflocculant yields (g/L) and flocculation activities (%) were observed for the following preferred nutritional sources: glucose (56%; 2.78 ± 0.15 g/L), (NH4)2NO3 (53%; 2.81 ± 0.37 g/L) and CaSO4 · H2O (47%; 2.19 ± 0.13 g/L). A Plackett-Burman design revealed the critical fermentation media components. The concentrations of these components were optimized [glucose; 16.0, (NH4)2NO3; 0.5 and CaSO4 · H2O; 1.2 (g/L)] through a central composite design with optimum bioflocculant yield of 3.02 g/L and flocculation activity of 63.7%. The regression coefficient (R(2) = 0.6569) indicates a weak estimation of the model's adequacy and a high lack-of-fit value (34.1%). Lack of synergy in the consortium may have been responsible for the model inadequacy observed. FTIR spectrometry showed the bioflocculant to be a heteropolysaccharide, while SEM imaging revealed an amorphous loosely arranged fluffy structure with interstial spacing of less than 1 µm.
评估了链霉菌属和短杆菌属的一个混合菌群产生生物絮凝剂的潜力。对于以下优选营养源,观察到了最佳生物絮凝剂产量(克/升)和絮凝活性(%):葡萄糖(56%;2.78±0.15克/升)、硝酸铵(53%;2.81±0.37克/升)和硫酸钙·水合物(47%;2.19±0.13克/升)。Plackett-Burman设计揭示了关键的发酵培养基成分。通过中心复合设计对这些成分浓度进行了优化[葡萄糖;16.0、硝酸铵;0.5和硫酸钙·水合物;1.2(克/升)],最佳生物絮凝剂产量为3.02克/升,絮凝活性为63.7%。回归系数(R(2)=0.6569)表明模型的充分性估计较弱,失拟值较高(34.1%)。混合菌群中缺乏协同作用可能是观察到模型不充分的原因。傅里叶变换红外光谱法表明生物絮凝剂是一种杂多糖,而扫描电子显微镜成像显示为无定形的松散排列蓬松结构,间隙间距小于1微米。