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使用氧载体时生长增强及β-半乳糖苷酶产量增加。

Enhanced growth and β-galactosidase production on using oxygen vectors.

作者信息

Ciobanu Corina Paraschiva, Blaga Alexandra Cristina, Froidevaux Renato, Krier Francois, Galaction Anca Irina, Cascaval Dan

机构信息

"Gheorghe Asachi" Technical University of Iasi, Faculty of Chemical Engineering and Environmental Protection "Cristofor Simionescu", Iasi, Romania.

Univ. Lille, INRA, ISA, Univ. Artois, Univ. Littoral Côte d'Opale, EA 7394, ICV-Institut Charles Viollette, 59000 Lille, France.

出版信息

3 Biotech. 2020 Jul;10(7):298. doi: 10.1007/s13205-020-02284-4. Epub 2020 Jun 10.

Abstract

The addition of -dodecane (between 1-3%) to the fermentation broth in a mechanically agitated and aerated bioreactor revealed improved DO (dissolved oxygen) levels induced during fermentation which lead to an increase in biomass productivity and faster glucose consumption. The maximum values for enzyme activity (increased with 43% compared with the control) and (the volumetric mass transfer coefficient) were obtained for the addition of 2% v/v n-dodecane in the bioreactor, due to the fact that oxygen limitation during the exponential growth phase of the bacterium can repress β-galactosidase production. The oxygen vector addition increased the available dissolved oxygen and activated a redox-sensitive regulation and an elevated intracellular oxidative metabolism that lead to the enhancement in biomass accumulation and a more accurate protein folding of β-galactosidase that would increase its activity. In addition to the experimental analysis, a complex model, developed using an improved version of Bacterial Foraging Algorithm and Artificial Neural Networks, was proposed, with a good average absolute value (6.2% in the training phase and 7.28% in the testing phase) between the process dynamic and the predictions generated by the model.

摘要

在机械搅拌和通气的生物反应器中,向发酵液中添加1%至3%的正十二烷,结果显示发酵过程中溶解氧(DO)水平得到改善,这导致生物量生产力提高和葡萄糖消耗加快。在生物反应器中添加2% v/v正十二烷时,酶活性(与对照相比提高了43%)和体积传质系数达到最大值,这是因为细菌指数生长阶段的氧气限制会抑制β-半乳糖苷酶的产生。添加氧气载体增加了可用溶解氧,并激活了氧化还原敏感调节和细胞内氧化代谢增强,从而导致生物量积累增加以及β-半乳糖苷酶更精确的蛋白质折叠,进而提高其活性。除了实验分析外,还提出了一个使用改进版细菌觅食算法和人工神经网络开发的复杂模型,该模型在过程动态与模型预测之间具有良好的平均绝对值(训练阶段为6.2%,测试阶段为7.28%)。

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