首页> 外文期刊>Journal of industrial microbiology & biotechnology >Indigestible dextrin stimulates glucoamylase production in submerged culture of Aspergillus kawachii.
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Indigestible dextrin stimulates glucoamylase production in submerged culture of Aspergillus kawachii.

机译:难消化的糊精可刺激川崎曲霉(Aspergillus kawachii)的深层培养中的葡糖淀粉酶产生。

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Submerged batch cultures of Aspergillus kawachii grown on indigestible dextrin were investigated for potential improvements in glucoamylase (GA) production. In flask culture, specific GA productivities per dry weight biomass using dextrin and indigestible dextrin were 11.0 and 56.1 mU/mg-DW, respectively. Indigestible dextrin was a poor substrate for enzymatic hydrolysis. Rates of glucose formation from dextrin and indigestible dextrin by enzymatic hydrolysis were 0.477 and 0.100 mg-glucose/ml/h, respectively. For this reason, residual glucose concentrations in batch cultures grown on indigestible dextrin remained below 1.32 mg/ml where glucose-limiting conditions were easily maintained. Batch culture using indigestible dextrin had the same residual glucose profile as dextrin fed-batch culture, and nearly the same GA activity was obtained after 42.5 h of growth. However, between 42.5 and 66 h, the GA production rate of the indigestible dextrin batch culture (11.5 mU/ml/h) was higher than that of the dextrin fed-batch culture (6.5 mU/ml/h). During this period, a high amount of residual maltooligosaccharide was detected in the culture supernatant grown on indigestible dextrin. The high GA productivity observed in the indigestible dextrin batch culture may have resulted from the absence of glucose and the simultaneous presence of maltooligosaccharides throughout growth
机译:研究了在不易消化的糊精上生长的 kawachii 的水下分批培养物对葡糖淀粉酶(GA)生产的潜在改善。在烧瓶培养中,使用糊精和难消化的糊精的每干重生物质的GA生产率分别为11.0和56.1 mU / mg-DW。难消化的糊精是酶水解的不良底物。糊精和难消化的糊精通过酶促水解形成葡萄糖的速率分别为0.477和0.100 mg-葡萄糖/ ml / h。因此,在不易消化的糊精上生长的分批培养物中的残留葡萄糖浓度保持在1.32 mg / ml以下,在此条件下,葡萄糖限制条件易于维持。使用不易消化的糊精进行的分批培养具有与糊精补料分批培养相同的残留葡萄糖谱,并且在42.5小时的生长后获得了几乎相同的GA活性。然而,在42.5至66 h之间,难消化的糊精分批培养物的GA产生率(11.5 mU / ml / h)高于糊精补料分批培养物的GA产生率(6.5 mU / ml / h)。在此期间,在不易消化的糊精上生长的培养上清液中检测到大量残留的麦芽低聚糖。在难消化的糊精分批培养物中观察到的高GA生产率可能是由于在整个生长过程中缺乏葡萄糖和同时存在麦芽低聚糖

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