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首页> 外文期刊>Biochemical Engineering Journal >Biosynthesis of natural colorant by Talaromyces amestolkiae: Mycelium accumulation and colorant formation in incubator shaker and in bioreactor
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Biosynthesis of natural colorant by Talaromyces amestolkiae: Mycelium accumulation and colorant formation in incubator shaker and in bioreactor

机译:Talomyces Amestolkiae的自然色剂生物合成:培养箱振荡器和生物反应器中的菌丝体积累和着色剂形成

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Fungi bioproducts have recently become commercially important to the food and pharmaceutical industry. However, different structural forms exhibited by filamentous fungi throughout their life cycles are often a bottleneck for productivity in many industrial processes. In this work, the relationship among mycelium accumulation, morphology, and colorant production was evaluated. Experiments were performed in an incubator shaker and in a stirred-tank bioreactor. First, a series of nitrogen sources and pure vitamins were investigated as additives to the monosodium glutamate-glucose medium in order to improve Talaromyces amestolkiae red colorant production in the incubator shaker. MSG and pH played an important role in generating stress, which affected cell growth and colorants production. The colorant synthesis seems to be is triggered under metabolic stress. Next, the effects of starter culture composition (MSG-glucose and nitrogen complex starter media) and airflow (2.0 and 8.0 Lmin())(-1) were investigated in the bioreactor. After 120 h of cultivation in the bioreactor, a maximum red colorant production of 9.33 UA(500nm), 72.38 % glucose consumption, and 4.53 g L-1 biomass concentration were achieved under complex nitrogen as starter medium at 8 Lmin(-1). Growth remained at moderate level, probably affected by the synergistic effect of MSG and pH as stress factors. Moreover, pellets formation favored suitable oxygenation of the culture broth leading to the best consumption of the carbon source.
机译:真菌生物化学符最近对食品和制药行业具有商业困难。然而,在整个生命周期中丝状真菌表现出的不同结构形式通常是许多工业过程中生产率的瓶颈。在这项工作中,评估了菌丝积聚,形态和着色剂的关系。实验在培养箱振荡器和搅拌罐生物反应器中进行。首先,研究了一系列氮源和纯维生素作为谷氨酸钠 - 葡萄糖培养基的添加剂,以改善培养箱振荡器中的缩小症Amestolkiae红色着色剂。 MSG和pH在产生压力方面发挥了重要作用,这影响了细胞生长和着色剂的产生。着色剂合成似乎在代谢应力下触发。接下来,在生物反应器中研究了起始培养组合物(MSG-葡萄糖和氮气复合起动介质)和气流(2.0和8.0Lmin())( - 1)的影响。在生物反应器中培养120小时后,在复合氮气下在8 Lmin(-1)时,在复合氮中获得最大红色着色剂的葡萄糖消耗,72.38%葡萄糖消耗和4.53g L-1生物质浓度。生长仍然适中,可能受到味精和pH作为压力因子的协同效应的影响。此外,颗粒形成有利于培养液的合适氧合,导致碳源的最佳消耗。

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