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Modeling lipid accumulation in oleaginous fungi in chemostat cultures: I. Development and validation of a chemostat model for Umbelopsis isabellina

机译:在化学恒温器培养物中的油性真菌中脂质积累的建模:I.伞形伞虫的化学恒温器模型的开发和验证

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摘要

Lipid-accumulating fungi may be able to produce biodiesel precursors from agricultural wastes. As a first step in understanding and evaluating their potential, a mathematical model was developed to describe growth, lipid accumulation and substrate consumption of the oleaginous fungus Umbelopsis isabellina (also known as Mortierella isabellina) in submerged chemostat cultures. Key points of the model are: (1) if the C-source supply rate is limited, maintenance has a higher priority than growth, which has a higher priority than lipid production; (2) the maximum specific lipid production rate of the fungus is independent of the actual specific growth rate. Model parameters were obtained from chemostat cultures of U. isabellina grown on mineral media with glucose and NH4+. The model describes the results of chemostat cultures well for D > 0.04 h−1, but it has not been validated for lower dilution rates because of practical problems with the filamentous fungus. Further validation using literature data for oleaginous yeasts is described in part II of this paper. Our model shows that not only the C/N-ratio of the feed, but also the dilution rate highly influences the lipid yield in chemostat cultures.
机译:积累脂质的真菌可能能够从农业废物中生产生物柴油的前体。作为了解和评估其潜力的第一步,开发了一个数学模型来描述淹没式恒化器培养物中油性真菌伞形线虫(Imbellapsis isabellina)(也称为伞形线虫)的生长,脂质积累和底物消耗。该模型的要点是:(1)如果碳源供应率受到限制,则维护的优先级高于增长,维护的优先级高于脂质的生产; (2)真菌的最大比脂产生速率与实际比生长速率无关。模型参数是通过在含葡萄糖和NH4 + 的矿物培养基上生长的伊莎贝拉酵母的恒化培养物获得的。该模型很好地描述了D> 0.04h −1 的化学恒温培养的结果,但由于丝状真菌存在实际问题,因此尚未验证其较低的稀释率。本文第二部分介绍了使用含油酵母的文献数据进行的进一步验证。我们的模型表明,不仅饲料的C / N比,而且稀释率都极大地影响了恒化培养物中脂质的产量。

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