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Improved production of mycelial biomass and ganoderic acid by submerged culture of Ganoderma lucidum SB97 using complex media

机译:通过使用复杂培养基进行灵芝灵芝SB97的深层培养来提高菌丝生物量和灵芝酸的产量

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This study aimed at improving the medium composition for efficient and economical production of mycelial biomass and ganoderic acid (GA) in the submerged culture of Ganoderma lucidum SB97. The effect of various carbon and nitrogen sources on the performance of mycelial growth and GA production by G. lucidum SB97 was investigated. First, the suitable carbon and nitrogen source was determined in shaker flask by the single-factor tests. Second, response surface methodology based on central composite design was applied to explore the optimal medium composition in a 7-1 stirred fermentor. Glucose and peptone were advantageous to the formation of mycelial biomass, whereas corn flour and soybean powder were favorable to the accumulation of GA content. The optimal medium composition for GA production was identified as 16 g/l of glucose, 2.93 g/l of peptone, 20.93 g/l of corn flour and 6.44 g/l of soybean powder. Confirmatory experiment of GA production (496 ± 10.4 mg/l) under optimized medium composition showed good agreement with the predicted value (469.3 mg/l). Cultivated with the optimized complex media in a 50-1 stirred fermentor, the mycelial biomass (21.53 ± 0.38g/l), GA content (23.04 ± 1.27mg/g-dry cell weight (DCW)), GA production (496 ± 10.4 mg/l), GA productivity (110.2 mg/(1 day)) and the maximal specific GA production rate (1.85 x 10~(-3) h~(-1)) increased by 18%, 39%, 64%, 46% and 67%, respectively, compared with that of using the semi-synthetic media. This study also demonstrated that the complex media were superior to the semi-synthetic media in avoiding the negative effect of catabolite repression on production of secondary metabolite. Furthermore, the proposed complex media strategy to suit the metabolic characteristics of cell could be applied to other secondary metabolites production from higher fungus in large scale submerged culture.
机译:这项研究旨在改善灵芝SB97水下培养中菌丝生物质和灵芝酸(GA)的高效经济生产的培养基组成。研究了各种碳源和氮源对灵芝SB97菌丝体生长和GA产生的影响。首先,通过单因素试验在摇瓶中确定合适的碳源和氮源。其次,基于中央复合设计的响应面方法被应用于探索7-1搅拌发酵罐的最佳培养基组成。葡萄糖和蛋白ept有利于菌丝生物质的形成,而玉米粉和大豆粉有利于GA含量的积累。确定用于GA生产的最佳培养基成分为16 g / l葡萄糖,2.93 g / l蛋白ept,20.93 g / l玉米粉和6.44 g / l大豆粉。在优化的培养基组成下,GA产量的验证实验(496±10.4 mg / l)与预测值(469.3 mg / l)吻合良好。在50-1搅拌发酵罐中用优化的复合培养基培养菌丝体生物质(21.53±0.38g / l),GA含量(23.04±1.27mg / g干细胞重量(DCW)),GA产量(496±10.4) mg / l),GA生产率(110.2 mg /(1天))和最大比GA产生率(1.85 x 10〜(-3)h〜(-1))分别提高了18%,39%,64%,与使用半合成媒体相比,分别为46%和67%。这项研究还表明,在避免分解代谢物阻抑对次生代谢产物产生的负面影响方面,复杂培养基优于半合成培养基。此外,所提出的适合细胞代谢特性的复杂培养基策略可以应用于大规模淹没培养中高级真菌的其他次生代谢产物的生产。

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