State Key Laboratory of Microbial Technology, Marine Biotechnology Research Center, Shandong University, Jinan, People's Republic of China.
PLoS One. 2011;6(11):e26825. doi: 10.1371/journal.pone.0026825. Epub 2011 Nov 11.
Zunongwangia profunda SM-A87 isolated from deep-sea sediment can secrete large quantity of exopolysaccharide (EPS). Response surface methodology was applied to optimize the culture conditions for EPS production. Single-factor experiment showed that lactose was the best carbon source. Based on the Plackett-Burman design, lactose, peptone and temperature were selected as significant variables, which were further optimized by the steepest ascent (descent) method and central composite design. The optimal culture conditions for EPS production and broth viscosity were determined as 32.21 g/L lactose, 8.87 g/L peptone and an incubation temperature of 9.8°C. Under these conditions, the maximum EPS yield and broth viscosity were 8.90 g/L and 6551 mPa•s, respectively, which is the first report of such high yield of EPS from a marine bacterium. The aqueous solution of the EPS displayed high viscosity, interesting shearing thinning property and great tolerance to high temperature, a wide range of pH, and high salinity.
从深海沉积物中分离出的深红红螺菌(Zunongwangia profunda)SM-A87 能够分泌大量胞外多糖(EPS)。本研究采用响应面法优化 EPS 生产的培养条件。单因素实验表明,乳糖是最佳的碳源。基于 Plackett-Burman 设计,选择乳糖、蛋白胨和温度作为显著变量,通过最陡爬坡(下降)法和中心复合设计进一步优化。确定 EPS 生产和发酵液黏度的最佳培养条件为:乳糖 32.21 g/L、蛋白胨 8.87 g/L、培养温度 9.8°C。在此条件下,EPS 的最大产量和发酵液黏度分别为 8.90 g/L 和 6551 mPa·s,这是首次从海洋细菌中获得如此高产量的 EPS。该 EPS 的水溶液具有高黏度、有趣的剪切变稀特性以及对高温、宽 pH 值范围和高盐度的高耐受性。