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通过引入耐热装置提高(此处原文缺少具体对象)的耐热性和赤藓糖醇产量。

Enhancing the thermotolerance and erythritol production of by introducing heat-resistant devices.

作者信息

Liang Peixin, Li Jing, Wang Qinhong, Dai Zongjie

机构信息

Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, China.

National Center of Technology Innovation for Synthetic Biology, Tianjin, China.

出版信息

Front Bioeng Biotechnol. 2023 Feb 9;11:1108653. doi: 10.3389/fbioe.2023.1108653. eCollection 2023.

Abstract

has been widely used in the food biotech-related industry, where it plays the host's role in producing erythritol. Nevertheless, a temperature of about 28°C-30°C has been estimated as the yeast's optimal growth temperature, leading to the consumption of a considerable quantity of cooling water, especially in summer, which is obligatory for fermentation. Herein is described a method for improving the thermotolerance and erythritol production efficiency at high temperatures of . Through screening and testing different heat resistant devices, eight refactored engineered strains showed better growth at higher temperature and the antioxidant properties of the eight engineered strains were also improved. In addition, the erythritol titer, yield and productivity of the strain FOS11-Ctt1 represented the best among the eight strains, reaching at 39.25 g/L, 0.348 g/g glucose, and 0.55 g/L/h respectively, which were increased by 156%, 86% and 161% compared with the control strain, respectively. This study provides insight into an effective heat-resistant device that could enhance the thermotolerance and erythritol production of , which might be considered a valued scientific reference for other resistant strains' construction.

摘要

它已在食品生物技术相关产业中广泛应用,在生产赤藓糖醇过程中扮演宿主角色。然而,据估计约28°C - 30°C是酵母的最佳生长温度,这导致消耗大量冷却水,尤其是在夏季,而冷却水对发酵来说是必不可少的。本文描述了一种提高[具体微生物名称]高温耐热性和赤藓糖醇生产效率的方法。通过筛选和测试不同的耐热装置,八个重构工程菌株在较高温度下表现出更好的生长,并且这八个工程菌株的抗氧化性能也得到了改善。此外,菌株FOS11 - Ctt1的赤藓糖醇滴度、产量和生产率在这八个菌株中表现最佳,分别达到39.25 g/L、0.348 g/g葡萄糖和0.55 g/L/h,与对照菌株相比分别提高了156%、86%和161%。本研究为一种有效的耐热装置提供了见解,该装置可增强[具体微生物名称]的耐热性和赤藓糖醇产量,这可能被视为其他抗性菌株构建的有价值的科学参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3765/9947466/6ed2fd87d866/fbioe-11-1108653-g001.jpg

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