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Sodium chloride improves pullulan production by Aureobasidium pullulans but reduces the molecular weight of pullulan

机译:氯化钠通过金属脱钴淀粉提高了普林兰产量,但降低了普林兰的分子量

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摘要

The effect of sodium chloride (NaCl) on pullulan production by batch culture of Aureobasidium pullulans CCTCC M 2012259 was investigated. NaCl at 3g/L improved the pullulan titer by 26.7% but reduced the molecular weight of pullulan to only 46.8% of that obtained in the control without NaCl. In order to elucidate the physiological mechanism underlying the effect of NaCl on pullulan production, assays of key enzyme activity, gene expression, energy metabolism, and intracellular uridine diphosphate glucose (UDP-glucose) content were performed. Results indicated that NaCl increased the activities of -phosphoglucose mutase and glucosyltransferase involved in pullulan biosynthesis, increased the activities of -amylase being responsible for pullulan degradation, upregulated the transcriptional levels of pgm1, fks, and amy2 genes, enhanced the driving force for ATP supply, and helped to maintain intracellular UDP-glucose at a high level in A. pullulans CCTCC M 2012259. All these results illuminate the reason by which NaCl increases pullulan titer but reduces the molecular weight of pullulan.
机译:研究了氯化钠(NaCl)对通过银硼酸钙蛋白CCTCCM 2012259分批培养的支链淀粉生产的影响。 NaCl在3G / L中改善胰蛋白酶滴度,仅将胰蛋白酶的分子量降低至在没有NaCl的对照中获得的46.8%。为了阐明NaCl对果渣的作用的生理机制,进行关键酶活性,基因表达,能量代谢和细胞内尿苷二磷酸葡萄糖(UDP-葡萄糖)含量的测定。结果表明,NaCl增加了在胰蛋白酶生物合成中涉及的磷葡萄糖蛋白酶和葡糖基转移酶的活性,增加 - 淀粉酶的活性负责蛋白质降解,上调PGM1,FKS和AMY2基因的转录水平,增强了ATP供应的驱动力,并帮助在A.CCTURANS CCTCC M 2012259中维持在高水平的细胞内UDP-葡萄糖。所有这些结果都照亮了NaCl增加了胰腺滴度,但降低了胰蛋白酶的分子量。

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