首页> 外文期刊>World Journal of Microbiology & Biotechnology >Novel outlook in engineering synthetic methylotrophs and formatotrophs: a course for advancing C1-based chemicals production
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Novel outlook in engineering synthetic methylotrophs and formatotrophs: a course for advancing C1-based chemicals production

机译:工程合成甲基植物和格式化的新型前景:用于推进基于C1的化学品生产的课程

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摘要

The world is at a critical stage to switch from fossil and agriculture feedstocks with sustainable alternatives for the production of biobased chemicals of everyday use. This has spurred interest in using carbon one compounds; methanol and formate as a substrate or cosubstrate for microbial-based production. However, considering that native methylotrophs and formatotrophs utilize methanol and formate respectively, their capabilities to efficiently produce high value-added chemicals are limited. Therefore, shifting from these native C1 microbes to metabolically engineered non-native C1 model strains has attracted increasing attention thanks to many advantages such as the availability of well-established tools and strategies for metabolic engineering, and in addition to its high cell growth rate. Herein, we discussed recent trends in developing synthetic methylotrophs and formatotrophs for methanol and formate-based biomanufacturing. Finally, we highlighted barriers and provided broad prospects on possible avenues for optimizing synthetic methylotrophic and formatotrophic strains with respect to the recent advances in biology.
机译:世界上是一种关键阶段,可以从化石和农业原料转换,以可持续的替代品用于生产日常使用的生物化学品。这对使用碳化合物施加了兴趣;甲醇和甲酸酯作为基材或用于微生物的生产的囊性。然而,考虑到本机甲基植物和物料分别利用甲醇和甲酸甲酸甲酸甲酸,其能够有效地产生高附加值的化学物质是有限的。因此,由于许多优点,这些天然C1微生物从这些天然C1微生物转移到代谢工程的非天然C1模型菌株的越来越多的关注,例如既有成熟的工具和代谢工程策略,以及其高细胞生长速率。在此,我们讨论了近期开发甲醇和基于甲酸甲酸种类生物制造的合成甲基植物和物质脂肪的趋势。最后,我们突出了障碍,并提供了在近期生物学进步的优化合成甲基营养和物料菌株的可能途径的广阔前景。

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