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Optimization of submerged culture conditions for the production of mycelial biomass and exopolysaccharides from lignosus rhinocerus

机译:木质犀牛菌丝体生物量和外多糖产生的深层培养条件优化。

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摘要

Tiger’s Milk mushroom (Lignosus rhinocerus) is a highly priced medicinal mushroom utilized in traditional medicine to treat various diseases. However, due to insufficient wild L. rhinocerus, submerged culture conditions and nutritional requirements for the production of mycelial biomass and exopolysaccharide (EPS) from L. rhinocerus were studied using one-factor-at-a-time and orthogonal matrix method in shake flask culture. The optimal pH and temperature for ideal production of mycelial biomass and EPS were found to be at pH6 and 25°C, respectively. The optimal compositions for mycelial biomass production were 80 g/L of glucose, 4 g/L of potassium nitrate, 0.4 g/L of FeSO4.7H2O and 0.1 g/L of CaCI2. Subsequently, the optimal compositions for EPS production were 80 g/L of glucose, 4 g/L of potassium nitrate, 1.4 g/L of FeSO4.7H2O and 1.1 g/L of CaCI2. The maximum mycelial biomass and EPS concentrations achieved in a 1.5 L stirred-tank bioreactor were 6.3788 g/L and 1.2 g/L, respectively. Mycelial biomass production was about 3 times higher than that at the basal medium. However, EPS production indicated no significant difference at the basal medium. In addition, the concentrations for α-amylase, β-amylase, cellulase and invertase in optimal medium were 2.87, 1.07, 3.0 and 3.0 mg/mL, respectively. Current findings suggest that the production of mycelial biomass and EPS of L. rhinocerus can be enhanced dramatically by controlling the culture conditions and modifying the medium’s composition.
机译:老虎的牛奶蘑菇(Lignosus rhinocerus)是一种价格昂贵的药用蘑菇,用于传统医学中,可治疗各种疾病。然而,由于野生犀牛不足,在摇瓶中使用一次一次性和正交矩阵法研究了淹没的培养条件和从犀牛生产菌丝体生物质和胞外多糖(EPS)的营养需求。文化。发现用于理想地生产菌丝生物质和EPS的最佳pH和温度分别在pH6和25°C。菌丝生物量生产的最佳组成是80 g / L葡萄糖,4 g / L硝酸钾,0.4 g / L FeSO4.7H2O和0.1 g / L CaCl2。随后,用于生产EPS的最佳成分是80 g / L葡萄糖,4 g / L硝酸钾,1.4 g / L FeSO4.7H2O和1.1 g / L CaCl2。在1.5 L搅拌釜式生物反应器中达到的最大菌丝生物量和EPS浓度分别为6.3788 g / L和1.2 g / L。菌丝体生物量的产量约为基础培养基的3倍。但是,EPS的产生表明在基础培养基上没有显着差异。此外,最佳培养基中α-淀粉酶,β-淀粉酶,纤维素酶和转化酶的浓度分别为2.87、1.07、3.0和3.0 mg / mL。当前的发现表明,通过控制培养条件和改变培养基的组成,可以大大提高犀牛的菌丝体生物量和EPS的产量。

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