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Effect of partial pressure of CO2 on the production of thermostable alpha-amylase and neutral protease by Bacillus caldolyticus

机译:CO2分压对解钙芽孢杆菌生产热稳定α-淀粉酶和中性蛋白酶的影响

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摘要

Controlling the concentration of dissolved oxygen is a standard feature in aerobic fermentation processes but the measurement of dissolved CO2 concentrations is often neglected in spite of its influence on the cellular metabolism. In this work room air and room air supplemented with 5 and 10% carbon dioxide were used for aeration during the cultivation of the thermophilic microorganism Bacillus caldolyticus (DSM 405) on starch to produce alpha-amylase (E.C. 3.2.1.1) and neutral protease (E.C. 3.4.24.27/28). The increased CO2 concentrations resulted in a 22% raise in activity of secreted alpha-amylase and a 43% raise in protease activity when compared with aeration with un-supplemented room air. There was no effect on the final biomass concentration. Furthermore, the lag-phase of fermentation was reduced by 30%, further increasing the productivity of alpha-amylase production. Determinations of dissolved CO2 in the culture broth were conducted both in situ with a probe as well as using exhaust gas analysis and both the methods of quantification showed good qualitative congruence.
机译:在好氧发酵过程中,控制溶解氧的浓度是一个标准功能,但是尽管溶解氧浓度会影响细胞代谢,但通常忽略测量溶解氧浓度。在此工作室中,在淀粉上嗜热微生物芽孢杆菌(DSM 405)的培养过程中,将室内空气和补充有5%和10%的二氧化碳的空气用于曝气,以产生α-淀粉酶(EC 3.2.1.1)和中性蛋白酶( EC 3.4.24.27/28)。与未补充室内空气的曝气相比,增加的CO2浓度导致分泌的α-淀粉酶活性增加22%,蛋白酶活性增加43%。对最终生物质浓度没有影响。此外,发酵的滞后期减少了30%,进一步提高了α-淀粉酶生产的生产率。用探针在原位和废气分析中测定培养液中溶解的CO2,两种定量方法均显示出良好的定性一致性。

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