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Sudden substrate dilution induces a higher rate of citric acid production by Aspergillus niger.

机译:突然的底物稀释会导致黑曲霉产生较高的柠檬酸产率。

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摘要

On the basis of the present knowledge of Aspergillus niger metabolism during citric acid fermentation, an idea on how to improve the process was formed. Initially, a higher sucrose concentration was used for the germination of spores, which caused a higher intracellular level of the osmoregulator, glycerol, to be present. When citric acid started to be excreted into the medium, the substrate was suddenly diluted. Optimization of this procedure resulted in a nearly tripled volumetric rate (grams per liter per hour) of acid production, while the overall fermentation time was halved compared with the usual batch process. Yet, a characteristic delay was observed at the start of the acid excretion after the dilution. Hypo-osmotic shock caused a prominent elevation of intracellular cyclic AMP levels. Simultaneously, the specific activity of 6-phosphofructo-1-kinase increased significantly, probably due to phosphorylation of the protein molecule by cyclic AMP-dependent protein kinase. Specific 6-phosphofructo-1-kinase activity was much higher in the treated than in the normally growing mycelium. The metabolic flow through glycolysis was expected to be higher, which should contribute to a higher volumetric rate of acid production.
机译:基于柠檬酸发酵过程中黑曲霉代谢的现有知识,形成了关于如何改善该过程的想法。最初,较高的蔗糖浓度用于孢子的萌发,这导致渗透调节剂甘油的细胞内水平较高。当柠檬酸开始排泄到培养基中时,底物突然被稀释。该方法的优化导致酸产量的体积率(克/升/小时)增加了近三倍,而总发酵时间与常规分批工艺相比减少了一半。然而,在稀释后酸排泄开始时观察到特征延迟。低渗休克引起细胞内循环AMP水平的显着升高。同时,6-磷酸果糖-1-激酶的比活性显着增加,这可能是由于环状AMP依赖性蛋白激酶使蛋白质分子磷酸化所致。治疗后的6-磷酸果糖-1-激酶的比活性要比正常生长的菌丝高得多。预计通过糖酵解的代谢流量会更高,这应有助于更高的酸产生体积率。

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