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首页> 外文期刊>Acta Scientarum Polonorum Technologia Alimentaria >Arachidonic acid production by Mortierella alpina using raw crop materials
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Arachidonic acid production by Mortierella alpina using raw crop materials

机译:用高山农作物原料生产高山被孢霉的花生四烯酸

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Background. Arachidonic acid (ARA) is one of the three essential fatty acids, and it is important for human body to keep healthy and is widely used. At present, expensive materials such as glucose and yeast extract are generally reported to be optimal for ARA production. A new cost-effective fermentation process including cheaper material for ARA production is of great significance.Material and methods. Feasibility of using corn meal and powdered soybean for fungal growth and lipid accumulation was evaluated by means of single factor test. N-hexadecane concentration was optimized, and the effect of temperature on biomass and ARA content was examined.Results. Mortierella alpina made better use of the aforementioned material as carbon and nitrogen sources for both hyphae growth and ARA production compared with glucose and yeast extract. Maximal levels of 10.9 g/L ARA and 26.1 g/L total lipids were obtained when 66 g/L corn meal, 54 g/L soybean meal and 6% (v/v) n-hexadecane were supplemented. A temperature-shift strategy involved three steps, namely, 30°C (3 days) – 25°C (4 days) – 20°C (4 days), which further improved ARA production by 24.7%.Conclusion. Several factors such as carbon and nitrogen sources, temperature and dissolved oxygen had great influence on biomass and microbial oil production. Mortierella alpina preferred corn and soybean meal compared with glucose and yeast extract, which would surely alleviate the high cost of ARA production. Based on this study, the new process is both low cost and practicable.
机译:背景。花生四烯酸(ARA)是三种必需脂肪酸之一,对人体健康至关重要,被广泛使用。目前,通常报道昂贵的材料例如葡萄糖和酵母提取物对于ARA生产是最佳的。一种新的具有成本效益的发酵工艺,包括用于ARA生产的廉价材料,具有重要的意义。材料和方法。通过单因素试验评估了使用玉米粉和大豆粉进行真菌生长和脂质积累的可行性。优化了正十六烷的浓度,并考察了温度对生物量和ARA含量的影响。与葡萄糖和酵母提取物相比,高山被孢霉更好地利用上述材料作为碳和氮源,用于菌丝生长和ARA生产。当补充66 g / L玉米粉,54 g / L大豆粉和6%(v / v)的正十六烷时,最大脂质水平为10.9 g / L ARA和总脂质为26.1 g / L。温度变化策略涉及三个步骤,即30°C(3天)– 25°C(4天)– 20°C(4天),这将ARA产量进一步提高了24.7%。碳,氮源,温度和溶解氧等因素对生物量和微生物产油量有很大影响。与葡萄糖和酵母提取物相比,高山孢子菌更喜欢玉米和豆粕,这肯定会减轻ARA生产的高成本。基于这项研究,新工艺既低成本又可行。

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