Schrader Jens, Schilling Martin, Holtmann Dirk, Sell Dieter, Filho Murillo Villela, Marx Achim, Vorholt Julia A
Karl-Winnacker-Institut, Biochemical Engineering, Theodor-Heuss-Allee 25, 60486 Frankfurt, Germany.
Trends Biotechnol. 2009 Feb;27(2):107-15. doi: 10.1016/j.tibtech.2008.10.009. Epub 2008 Dec 26.
Methanol is one of the building blocks in the chemical industry and can be synthesized either from petrochemical or renewable resources, such as biogas. Bioprocess technology with methylotrophic bacteria is well established, as illustrated by large-scale single-cell protein production in the past. During recent years, the first genomes of methylotrophs have been sequenced and significant progress in elucidating their metabolism has been made. In addition, the tool set for genetic engineering of methylotrophic bacteria has expanded greatly and strategies to produce fine and bulk chemicals with methylotrophs have been described. This review highlights the potential of these bacteria for the development of economically competitive bioprocesses based on methanol as an alternative carbon source, bringing together biological, technical and economic considerations.
甲醇是化学工业的基础原料之一,可由石化资源或可再生资源(如沼气)合成。利用甲基营养型细菌的生物工艺技术已相当成熟,过去大规模单细胞蛋白生产就是例证。近年来,甲基营养型细菌的首批基因组已完成测序,在阐明其代谢方面取得了重大进展。此外,用于甲基营养型细菌基因工程的工具集已大幅扩展,并且已经描述了利用甲基营养型细菌生产精细化学品和大宗化学品的策略。本综述强调了这些细菌在开发以甲醇作为替代碳源的具有经济竞争力的生物工艺方面的潜力,综合了生物学、技术和经济等方面的考量。