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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Batch and Pulsed Fed-Batch Cultures of Aspergillus flavipes FP-500 Growing on Lemon Peel at Stirred Tank Reactor
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Batch and Pulsed Fed-Batch Cultures of Aspergillus flavipes FP-500 Growing on Lemon Peel at Stirred Tank Reactor

机译:在搅拌釜反应器上柠檬皮上生长的黄曲霉FP-500的分批和脉冲补料分批培养

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Aspergillus flavipes FP-500 grew up on submerged cultures using lemon peel as the only carbon source, developing several batch and pulsed fed-batch trials on a stirred tank reactor. The effect of carbon source concentration, reducing sugar presence and initial pH on exopectinase and endopectinase production, was analyzed on batch cultures. From this, we observed that the highest substrate concentration favored biomass (X (max)) but had not influence on the corresponding specific production (q (p)) of both pectinases; the most acid condition provoked higher endopectinase-specific productions but had not a significant effect on those corresponding to exopectinases; and reducing sugar concentrations higher than 1.5 g/L retarded pectinase production. On the other hand, by employing the pulsed fed-batch operation mode, we observed a prolonged growth phase, and an increase of about twofold on endopectinase production without a significant raise on biomass concentration. So, pulsed fed-batch seems to be a good alternative for obtaining higher endopectinase titers by using high lemon peel quantities without having mixing and repression problems to the system. The usefulness of unstructured kinetic models for explaining, under a theoretic level, the behavior of the fungus along the batch culture with regard to pectinase production was evident.
机译:黄曲霉FP-500在水下培养物中长大,使用柠檬皮作为唯一碳源,在搅拌釜反应器上进行了数批和脉冲补料分批试验。在分批培养中分析了碳源浓度,减少糖的存在和初始pH对外切果胶酶和内切果胶酶生产的影响。据此,我们观察到最高的底物浓度有利于生物质(X(最大)),但不影响两种果胶酶的相应比产量(q(p));最强的酸性条件引起较高的内切酶特异性生产,但对相应的外切酶没有明显影响;降低糖浓度高于1.5 g / L则阻止果胶酶生产。另一方面,通过采用脉冲补料分批操作模式,我们观察到了延长的生长期,内切果胶酶产量增加了约两倍,而生物量浓度没有显着提高。因此,脉冲补料分批似乎是通过使用大量柠檬皮而获得较高内切果胶酶滴度的良好选择,而不会引起系统的混合和阻抑问题。很明显,非结构动力学模型在理论水平上解释真菌沿果胶酶生产在分批培养中的行为非常有用。

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