Gu Di, Jiao Yingchun, Wu Jianan, Liu Zhengjie, Chen Qihe
Department of Food Science and Nutrition, Zhejiang University, Hangzhou 310058, China.
College of Eco-Environmental Engineering, Qinghai Province, Xining 810016, China.
Molecules. 2017 May 16;22(5):814. doi: 10.3390/molecules22050814.
With the rising awareness of microbial exopolysaccharides (EPSs) application in various fields, halophilic microorganisms which produce EPSs have received broad attention. A newly identified ZJUQH CCTCC M2016754 was determined to be a moderate halobacterium on account of its successful adaption to the environment containing 10% NaCl. The optimal combination of fermentation medium compositions on EPS production was studied. In this work, a fractional factorial design was adopted to investigate the significant factors that affected EPS production. The factors of KCl and MgSO₄ were found to have a profound impact on EPS production. We utilized central composite design and response surface methodology to derive a statistical model for optimizing the submerged culture medium composition. Judging from these experimental results, the optimum culture medium for producing EPSs was composed of 0.50% casein hydrolysate, 1.00% sodium citrate, 0.30% yeast extract, 0.50% KCl, 0.50% peptone, and 5.80% MgSO₄ (initial pH 7.0). The maximal EPS was 48.01 g/L, which is close to the predicted value (50.39 g/L). In the validation experiment, the highest concentration of 70.64 g/L EPSs was obtained after 120 h under the optimized culture medium in a 5-L bioreactor. EPS from this bacterium was also characterized by differential scanning calorimetry (DSC) and Fourier transform infrared analysis (FT-IR). The findings in this study imply that ZJUQH has great potential to be exploited as a source of EPSs utilized in food, the pharmaceutical and agriculture industry, and in the biotreatment of hypersaline environments.
随着微生物胞外多糖(EPSs)在各个领域应用的关注度不断提高,能够产生EPSs的嗜盐微生物受到了广泛关注。新鉴定的ZJUQH CCTCC M2016754由于成功适应了含有10%氯化钠的环境,被确定为中度嗜盐菌。研究了发酵培养基成分对EPS产生的最佳组合。在这项工作中,采用分数析因设计来研究影响EPS产生的显著因素。发现氯化钾和硫酸镁因素对EPS产生有深远影响。我们利用中心复合设计和响应面方法推导出一个用于优化深层培养基成分的统计模型。从这些实验结果来看,生产EPSs的最佳培养基由0.50%的水解酪蛋白、1.00%的柠檬酸钠、0.30%的酵母提取物、0.50%的氯化钾、0.50%的蛋白胨和5.80%的硫酸镁组成(初始pH值7.0)。最大EPS为48.01 g/L,接近预测值(50.39 g/L)。在验证实验中,在5-L生物反应器中,在优化培养基下培养120小时后,获得了最高浓度为70.64 g/L的EPSs。还通过差示扫描量热法(DSC)和傅里叶变换红外分析(FT-IR)对该细菌产生的EPS进行了表征。本研究结果表明,ZJUQH作为一种EPSs来源,在食品、制药、农业以及高盐环境生物处理等方面具有巨大的开发潜力。