食品科学 ›› 2023, Vol. 44 ›› Issue (3): 1-11.doi: 10.7506/spkx1002-6630-20220827-327

• 微生物蛋白专栏 •    下一篇

微生物利用一碳底物生产单细胞蛋白研究进展

傅晓莹,乔玮博,史硕博   

  1. (北京化工大学 北京软物质科学与工程高精尖创新中心,北京 100029)
  • 出版日期:2023-02-15 发布日期:2023-02-28
  • 基金资助:
    “十三五”国家重点研发计划项目(2018YFA0900100)

Microbial Production of Single Cell Proteins from Single Carbon Substrates: A Review

FU Xiaoying, QIAO Weibo, SHI Shuobo   

  1. (Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China)
  • Online:2023-02-15 Published:2023-02-28

摘要: 世界人口的持续增长导致肉类、乳制品等高蛋白食品的需求大幅增加,给我国食品蛋白的供应带来了较大挑战。微生物能够利用二氧化碳、甲烷、甲醇等一碳化合物生产高质量的单细胞蛋白,这种新型蛋白可应用于食品工业。建立微生物蛋白绿色生物制造的食品蛋白生产体系,对保障国家食物蛋白供给安全十分重要。此外,微生物转化一碳化合物制备单细胞蛋白的过程还可以减少碳排放、缓解温室效应,实现可持续发展。本文主要总结微生物单细胞蛋白在食品工业中的应用;论述近年来微生物利用一碳化合物高效生产单细胞蛋白的研究进展;阐述天然一碳利用微生物的代谢网络机制以及改造前景;展望了利用合成生物学改造微生物从一碳底物生产单细胞蛋白的前景,旨在为微生物单细胞蛋白的商业化生产提供思路。

关键词: 单细胞蛋白;一碳化合物;微生物工程

Abstract: With the continuous growth of the world population, the demand for high-protein foods such as meat and dairy products is increasing greatly, which brings great challenges to the supply of food proteins in China. Some microbes can utilize carbon dioxide, methane, methanol and other single carbon compounds to produce high-quality single cell proteins (SCP), which can be applied in the food industry. Establishing a green microbial system for the production of SCP is important to ensure the security of the food protein supply in China. In addition, microbial transformation of single carbon compounds to SCP can reduce carbon emissions, alleviate the greenhouse effect, and achieve sustainable development. In this article, we review the application of microbial SCP in the food industry and recent advances in the microbial production of SCP from single carbon compounds, and we describe the metabolic network mechanisms of microorganisms utilizing natural single carbon compounds and speculate on the prospects for the modification of these microorganisms. Finally, we discuss the future prospects for the use of synthetic biology to modify microorganisms to produce SCP from single carbon substrates. With this review, we hope to provide ideas for the commercial production of microbial SCP.

Key words: single cell proteins; single carbon compounds; microbial engineering

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