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通过表达威氏血红蛋白和氧气张力调节增强木醋酸杆菌的细菌纤维素生产。

Enhanced bacterial cellulose production by Gluconacetobacter xylinus via expression of Vitreoscilla hemoglobin and oxygen tension regulation.

机构信息

Key Laboratory of Industrial Fermentation Microbiology, Ministry of Education, Tianjin University of Science and Technology, Tianjin, 300457, People's Republic of China.

Tianjin Jialihe Livestock Group Co., Ltd, Jin Wei Road, Beichen District, Tianjin, 300402, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2018 Feb;102(3):1155-1165. doi: 10.1007/s00253-017-8680-z. Epub 2017 Dec 4.

Abstract

Oxygen plays a key role during bacterial cellulose (BC) biosynthesis by Gluconacetobacter xylinus. In this study, the Vitreoscilla hemoglobin (VHb)-encoding gene vgb, which has been widely applied to improve cell survival during hypoxia, was heterologously expressed in G. xylinus via the pBla-VHb-122 plasmid. G. xylinus and G. xylinus-vgb were statically cultured under hypoxic (10 and 15% oxygen tension in the gaseous phase), atmospheric (21%), and oxygen-enriched conditions (40 and 80%) to investigate the effect of oxygen on cell growth and BC production. Irrespective of vgb expression, we found that cell density increased with oxygen tension (10-80%) during the exponential growth phase but plateaued to the same value in the stationary phase. In contrast, BC production was found to significantly increase at lower oxygen tensions. In addition, we found that BC production at oxygen tensions of 10 and 15% was 26.5 and 58.6% higher, respectively, in G. xylinus-vgb than that in G. xylinus. The maximum BC yield and glucose conversion rate, of 4.3 g/L and 184.7 mg/g, respectively, were observed in G. xylinus-vgb at an oxygen tension of 15%. Finally, BC characterization suggested that hypoxic conditions enhance BC's mass density, Young's modulus, and thermostability, with G. xylinus-vgb synthesizing softer BC than G. xylinus under hypoxia as a result of a decreased Young's modulus. These results will facilitate the use of static culture for the production of BC.

摘要

氧气在木葡糖酸醋杆菌(Gluconacetobacter xylinus)合成细菌纤维素(BC)的过程中起着关键作用。在这项研究中,通过 pBla-VHb-122 质粒将已广泛应用于提高缺氧细胞存活率的 Vitreoscilla 血红蛋白(VHb)编码基因 vgb 异源表达于 G. xylinus 中。将 G. xylinus 和 G. xylinus-vgb 在缺氧(气相中 10%和 15%的氧分压)、大气(21%)和富氧条件(40%和 80%)下进行静态培养,以研究氧气对细胞生长和 BC 生产的影响。无论 vgb 是否表达,我们发现细胞密度在指数生长期随着氧分压(10-80%)的增加而增加,但在稳定期达到相同的值。相比之下,BC 的产量在较低的氧分压下显著增加。此外,我们发现氧分压为 10%和 15%时,G. xylinus-vgb 中的 BC 产量分别比 G. xylinus 高 26.5%和 58.6%。在氧分压为 15%时,G. xylinus-vgb 的最大 BC 产率和葡萄糖转化率分别为 4.3 g/L 和 184.7 mg/g。最后,BC 特性表明,缺氧条件会增加 BC 的质量密度、杨氏模量和热稳定性,而 G. xylinus-vgb 在缺氧条件下合成的 BC 比 G. xylinus 更软,这是由于杨氏模量降低所致。这些结果将有助于利用静态培养生产 BC。

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