Guo Liwei, Sun Lichao, Huo Yi-Xin
Key Laboratory of Molecular Medicine and Biotherapy, School of Life Science, Beijing Institute of Technology, No. 5 South Zhongguancun Street, Beijing, 100081, People's Republic of China.
Biotechnol Biofuels Bioprod. 2022 Aug 9;15(1):80. doi: 10.1186/s13068-022-02178-y.
Oxo chemicals are valuable chemicals for synthesizing a wide array of industrial and consumer products. However, producing of oxo chemicals is predominately through the chemical process called hydroformylation, which requires petroleum-sourced materials and generates abundant greenhouse gas. Current concerns on global climate change have renewed the interest in reducing greenhouse gas emissions and recycling the plentiful greenhouse gas. A carbon-neutral manner in this regard is producing oxo chemicals biotechnologically using greenhouse gas as C feedstocks. Exemplifying isobutyraldehyde, this review demonstrates the significance of using greenhouse gas for oxo chemicals production. We highlight the current state and the potential of isobutyraldehyde synthesis with a special focus on the in vivo and in vitro scheme of C-based biomanufacturing. Specifically, perspectives and scenarios toward carbon- and nitrogen-neutral isobutyraldehyde production are proposed. In addition, key challenges and promising approaches for enhancing isobutyraldehyde bioproduction are thoroughly discussed. This study will serve as a reference case in exploring the biotechnological potential and advancing oxo chemicals production derived from C feedstocks.
羰基化学品是用于合成多种工业和消费品的重要化学品。然而,羰基化学品的生产主要通过称为氢甲酰化的化学过程,该过程需要石油来源的原料并产生大量温室气体。当前对全球气候变化的关注重新激发了人们对减少温室气体排放和回收大量温室气体的兴趣。在这方面,一种碳中性的方式是以温室气体为碳原料,通过生物技术生产羰基化学品。以异丁醛为例,本综述展示了利用温室气体生产羰基化学品的重要性。我们重点介绍了异丁醛合成的现状和潜力,特别关注基于碳的生物制造的体内和体外方案。具体而言,提出了实现碳和氮中性异丁醛生产的前景和设想。此外,还深入讨论了提高异丁醛生物生产的关键挑战和有前景的方法。本研究将作为探索生物技术潜力和推进源自碳原料的羰基化学品生产的参考案例。