Yu Yingxuan, Shi Zhongliang, Li Weiming, Bian Mengyang, Cheng Chi, Xi Yimei, Yao Shuhua, Zeng Xiangfeng, Jia Yongfeng
Liaoning Engineering Research Center for Treatment and Recycling of Industrially Discharged Heavy Metals, Shenyang University of Chemical Technology, Shenyang, China.
Key Laboratory of Pollution Ecology and Environmental Engineering, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang, China.
Appl Environ Microbiol. 2025 Jun 18;91(6):e0049525. doi: 10.1128/aem.00495-25. Epub 2025 May 12.
Electron transfer is essential for the production efficiency of value-added products in anaerobic fermentation, such as butanol and ethanol as biofuels, and short-chain fatty acids (SCFAs) including butyric acid and acetic acid as platform chemicals. Electron mediators (EMs), also known as electron shuttles, can facilitate electron transfer to counter irreversible or slow redox reactions that limit fermentation. The addition of EMs has been shown to be an effective strategy to promote fermentation by various bacteria, particularly species, for these valuable product syntheses. This paper reviews recent advancements in the application of exogenous electron mediators (EEMs) across various scenarios. Common EEM types, their characteristics, and mechanisms are summarized, and different application scenarios are discussed to elucidate the effect of EEMs. Key technical challenges and future directions for EEM application are also explored.
电子转移对于厌氧发酵中增值产品的生产效率至关重要,这些增值产品包括作为生物燃料的丁醇和乙醇,以及作为平台化学品的短链脂肪酸(SCFA),如丁酸和乙酸。电子介质(EM),也称为电子穿梭体,可以促进电子转移,以应对限制发酵的不可逆或缓慢氧化还原反应。添加电子介质已被证明是促进各种细菌发酵的有效策略,特别是对于这些有价值产品的合成。本文综述了外源电子介质(EEM)在各种场景下应用的最新进展。总结了常见的电子介质类型、它们的特性和作用机制,并讨论了不同的应用场景以阐明电子介质的作用效果。还探讨了电子介质应用的关键技术挑战和未来发展方向。