School of Biological Science and Technology, University of Jinan, Jinan, 250022, People's Republic of China.
Yantai Food and Drug Control and Test Center, Yantai, 264003, People's Republic of China.
World J Microbiol Biotechnol. 2022 Nov 8;39(1):6. doi: 10.1007/s11274-022-03447-6.
Nowadays, microbial synthesis has become a common way for producing valuable chemicals. Traditionally, microbial production of valuable chemicals is accomplished by a single strain. For the purpose of increasing the production titer and yield of a recombinant strain, complicated pathways and regulation layers should be fine-tuned, which also brings a heavy metabolic burden to the host. In addition, utilization of various complex and mixed substrates further interferes with the normal growth of the host strain and increases the complexity of strain engineering. As a result, modular co-culture technology, which aims to divide a target complex pathway into separate modules located at different single strains, poses an alternative solution for microbial production. Recently, modular co-culture strategy has been employed for the synthesis of different natural products. Therefore, in this review, various chemicals produced with application of co-cultivation technology are summarized, including co-culture with same species or different species, and regulation of population composition between the co-culture members. In addition, development prospects and challenges of this promising field are also addressed, and possible solution for these issues were also provided.
如今,微生物合成已成为生产有价值化学品的常见方法。传统上,微生物生产有价值的化学品是通过单一菌株完成的。为了提高重组菌株的生产滴度和产量,需要对复杂的途径和调控层进行微调,这也给宿主带来了沉重的代谢负担。此外,利用各种复杂和混合的底物进一步干扰了宿主菌株的正常生长,增加了菌株工程的复杂性。因此,模块化共培养技术旨在将目标复杂途径分为位于不同单一菌株中的单独模块,为微生物生产提供了一种替代解决方案。最近,模块化共培养策略已被用于合成不同的天然产物。因此,在这篇综述中,总结了应用共培养技术生产的各种化学品,包括同种或不同种的共培养,以及共培养成员之间种群组成的调控。此外,还讨论了这个有前途的领域的发展前景和挑战,并为这些问题提供了可能的解决方案。