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破解暗发酵生物制氢途径的瓶颈:菌株改良的影响分析。

Debottlenecking the biological hydrogen production pathway of dark fermentation: insight into the impact of strain improvement.

机构信息

CAS Key Laboratory of Biobased Materials, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, 266101, China.

出版信息

Microb Cell Fact. 2022 Aug 19;21(1):166. doi: 10.1186/s12934-022-01893-3.

Abstract

Confronted with the exhaustion of the earth's fossil fuel reservoirs, bio-based process to produce renewable energy is receiving significant interest. Hydrogen is considered as an attractive energy carrier that can replace fossil fuels in the future mainly due to its high energy content, recyclability and environment-friendly nature. Biological hydrogen production from renewable biomass or waste materials by dark fermentation is a promising alternative to conventional routes since it is energy-saving and reduces environmental pollution. However, the current yield and evolution rate of fermentative hydrogen production are still low. Strain improvement of the microorganisms employed for hydrogen production is required to make the process competitive with traditional production methods. The present review summarizes recent progresses on the screening for highly efficient hydrogen-producing strains using various strategies. As the metabolic pathways for fermentative hydrogen production have been largely resolved, it is now possible to engineer the hydrogen-producing strains by rational design. The hydrogen yields and production rates by different genetically modified microorganisms are discussed. The key limitations and challenges faced in present studies are also proposed. We hope that this review can provide useful information for scientists in the field of fermentative hydrogen production.

摘要

面对地球化石燃料储量的枯竭,基于生物的工艺来生产可再生能源正受到极大关注。氢气被认为是一种有吸引力的能源载体,由于其高能量含量、可回收性和环境友好性,它可以在未来替代化石燃料。通过黑暗发酵从可再生生物质或废物中生产生物氢气是一种很有前途的替代传统途径的方法,因为它节能并减少环境污染。然而,目前发酵生产氢气的产量和进化率仍然较低。需要对用于生产氢气的微生物进行菌株改良,以使该工艺与传统生产方法具有竞争力。本综述总结了使用各种策略筛选高效产氢菌株的最新进展。由于发酵产氢的代谢途径已经基本阐明,现在可以通过合理设计来对产氢菌株进行工程改造。讨论了不同遗传修饰微生物的产氢量和产率。还提出了目前研究中面临的关键限制和挑战。我们希望本综述能为发酵产氢领域的科学家提供有用的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/326c/9389701/c4a666cd96ca/12934_2022_1893_Fig1_HTML.jpg

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