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Optimization of Submerged Culture Conditions for Mycelial Growth and Cordycepin Production of Medicinal Fugus Cordyceps Militaris

机译:优化菌丝生长和冬虫夏植物生产的髓培养条件的优化

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This study was aimed to optimize the conditions of submerged culture for mycelial growth and cordycepin production of C.miiitaris by one-factor-at-a-time and orthogonal layout methods. The one-factor-at-a-time method was used to investigate the effects of medium components and environmental factors on mycelial growth and cordycepin production. The optimal initial pH value and temperature for mycelial growth were 6.0 and 20°C, while those for cordycepin production were 5.0 and 26° C, respectively. Among the medium components, sucrose, peptone, MgSO4, K2HPO4, NAA were the most suitable carbon, nitrogen, mineral sources and growth factor. Subsequently, the concentration of these medium components was optimized using the orthogonal layout method. The effects of media composition on the mycelial growth of C. militaris were orderly sucrose > peptone > MgSO4· 7H2O > K2HPO4 > NAA, and those on cordycepin production were orderly peptone > K2HPO4 > NAA > MgSO4-7H2O > sucrose. The optimal concentration of the components for mycelial growth were 40g/I sucrose, 25g/I peptone, 0.5g/l MgSO4·7H2O, 1.5g/I K2HPO4,2.0mg/l NAA, and those for cordycepin production were 40 g/l sucrose, 15 g/1 peptone, 0.5 g/l MgSO4·7H20,0.5 g/l K2HPO4,4.0mg/l NAA. This optimization strategy in shake flask culture resulted in a mycelial yield of 22.97 g/l, and cordycepin production in culture broth and in cells were 961.21 mg/1 and 12.87 mg/g respectively. The results obtained in this work will have a potential impact on the industrial scale production of cordycepin by submerged culture.
机译:本研究旨在通过一次性和正交的布局方法优化菌丝生长和冬虫糖素生成的淹没培养条件。用于研究中间组分和环境因素对菌丝生长和冬虫素产量的影响。菌丝体生长的最佳初始pH值和温度为6.0和20°C,而用于冬虫氏素产量的那些分别为5.0和26°C。在培养基组分中,蔗糖,蛋白胨,MgSO 4,K 2 HPO 4,NAA是最合适的碳,氮,矿物来源和生长因子。随后,使用正交的布局方法优化这些培养基组分的浓度。培养基组合物对C. militaris的菌丝生长的影响是有序蔗糖>蛋白胨> MgSO4·7H2O> K2HPO4> NAA,冬虫氏蛋白产生的那些是有序的蛋白胨> K2HPO4> NAA> MgSO4-7H2O>蔗糖。菌丝体生长的最佳浓度为40g / i蔗糖,25g / i蛋白胨,0.5g / l MgSO4·7h 2 O,1.5g / I k2HPO4,2.0mg / L Naa,以及冬虫夏素产量的生产量为40克/升蔗糖,15g / 1蛋白胨,0.5g / L mgSO4·7H20,0.5g / L K2HPO4,4.0mg / L NAA。摇瓶培养中的这种优化策略导致菌丝产率为22.97克/升,培养液和细胞中的冬虫素产量分别为961.21mg / 1和12.87mg / g。在这项工作中获得的结果将对浸没式培养产生冬虫氏素产业规模生产的潜在影响。

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